Jim Collins / en With AI, researchers identify a new class of antibiotic candidates /news/researchers-use-ai-identify-new-class-antibiotic-candidates <span class="field field--name-title field--type-string field--label-hidden"><h1>With AI, researchers identify a new class of antibiotic candidates</h1> </span> <span class="field field--name-uid field--type-entity-reference field--label-hidden"> <span>By Tom Ulrich</span> </span> <span class="field field--name-created field--type-created field--label-hidden"><time datetime="2023-12-20T11:30:46-05:00" class="datetime">December 20, 2023</time> </span> <div class="hero-section container"> <div class="hero-section__row row"> <div class="hero-section__content hero-section__content_left col-6"> <div class="hero-section__breadcrumbs"> <div class="block block-system block-system-breadcrumb-block"> <nav class="breadcrumb" role="navigation" aria-labelledby="system-breadcrumb"> <h2 id="system-breadcrumb" class="visually-hidden">Breadcrumb</h2> <ol> <li> <a href="/">Home</a> </li> <li> <a href="/news">News</a> </li> </ol> </nav> </div> </div> <div class="hero-section__title"> <div class="block block-layout-builder block-field-blocknodelong-storytitle"> <span class="field field--name-title field--type-string field--label-hidden"><h1>With AI, researchers identify a new class of antibiotic candidates</h1> </span> </div> </div> <div class="hero-section__description"> <div class="block block-layout-builder block-field-blocknodelong-storybody"> <div class="clearfix text-formatted field field--name-body field--type-text-with-summary field--label-hidden field__item"><p>New compounds can kill methicillin-resistant <em>Staphylococcus aureus</em> (MRSA), an often-lethal bacterial pathogen</p> </div> </div> </div> <div class="hero-section__author"> <div class="block block-layout-builder block-extra-field-blocknodelong-storyextra-field-author-custom"> By Anne Trafton, MIT News Office </div> </div> <div class="hero-section__date"> <div class="block block-layout-builder block-field-blocknodelong-storycreated"> <span class="field field--name-created field--type-created field--label-hidden"><time datetime="2023-12-20T11:30:46-05:00" title="Wednesday, December 20, 2023 - 11:30" class="datetime">December 20, 2023</time> </span> </div> </div> </div> <div class="hero-section__right col-6"> <div class="hero-section__image"> <div class="block block-layout-builder block-field-blocknodelong-storyfield-image"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"> <article class="media media--type-image media--view-mode-multiple-content-types-header"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <picture> <source srcset="/files/styles/multiple_ct_header_desktop_xl/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=Zd0fBLN4 1x" media="all and (min-width: 1921px)" type="image/png" width="754" height="503"> <source srcset="/files/styles/multiple_ct_header_desktop_xl/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=Zd0fBLN4 1x" media="all and (min-width: 1601px) and (max-width: 1920px)" type="image/png" width="754" height="503"> <source srcset="/files/styles/multiple_ct_header_desktop/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=MumTZr7t 1x" media="all and (min-width: 1340px) and (max-width: 1600px)" type="image/png" width="736" height="520"> <source srcset="/files/styles/multiple_ct_header_laptop/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=sYWpSKYt 1x" media="all and (min-width: 800px) and (max-width: 1339px)" type="image/png" width="641" height="451"> <source srcset="/files/styles/multiple_ct_header_tablet/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=Um6VAVo5 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/png" width="706" height="417"> <source srcset="/files/styles/multiple_ct_header_phone/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=qRA0Ru2a 1x" media="all and (max-width: 539px)" type="image/png" width="499" height="294"> <img loading="eager" width="499" height="294" src="/files/styles/multiple_ct_header_phone/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=qRA0Ru2a" alt="Methicillin-resistant Staphylococcus aureus (gold) on the remains of an immune cell (red)" title="Methicillin-resistant Staphylococcus aureus (gold) on the remains of an immune cell (red)" typeof="foaf:Image"> </picture> </div> <div class="media-caption"> <div class="media-caption__description"> Methicillin-resistant Staphylococcus aureus (gold) on the remains of an immune cell (red) </div> </div> </article> </div> </div> </div> </div> </div> </div> <div class="content-section container"> <div class="content-section__main"> <div class="block block-better-social-sharing-buttons 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<use href="/modules/contrib/better_social_sharing_buttons/assets/dist/sprites/social-icons--no-color.svg#x" /> </svg> </a> <a href="mailto:?subject=&amp;body=/taxonomy/term/991/feed" title="Share to Email" aria-label="Share to Email" class="social-sharing-buttons-button share-email" target="_blank" rel="noopener"> <svg aria-hidden="true" width="32px" height="32px" style="border-radius:100%;"> <use href="/modules/contrib/better_social_sharing_buttons/assets/dist/sprites/social-icons--no-color.svg#email" /> </svg> </a> </div> </div> <div class="block block-layout-builder block-field-blocknodelong-storyfield-content-paragraphs"> <div class="field field--name-field-content-paragraphs field--type-entity-reference-revisions field--label-hidden field__items"> <div class="field__item"> <div class="paragraph paragraph--type--text-with-sidebar text-with-sidebar"> <div class="field field--name-field-sidebar field--type-entity-reference-revisions field--label-hidden field__items"> <div class="field__item"> <div class="paragraph paragraph--type--sidebar-menu sidebar-menu"> <div class="sidebar-menu__col"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Related people</p> </div> <div class="field field--name-field-links field--type-link field--label-hidden field__items"> <div class="field__item"><a href="/bios/james-collins">James Collins</a></div> </div> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--sidebar-menu sidebar-menu"> <div class="sidebar-menu__col"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Related programs</p> </div> <div class="field field--name-field-links field--type-link field--label-hidden field__items"> <div class="field__item"><a href="/infectious-disease-microbiome">Infectious Disease and Microbiome Program</a></div> </div> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--sidebar-articles sidebar-articles"> <div class="sidebar-articles__col"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Related news</p> </div> <div class="field field--name-field-content-reference field--type-entity-reference field--label-hidden field__items"> <div class="field__item"><article about="/news/artificial-intelligence-yields-new-antibiotic" class="node"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"><article class="media media--type-image media--view-mode-multiple-ct-sidebar-link-with-image"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <a href="/news/artificial-intelligence-yields-new-antibiotic"><picture> <source 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height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_tablet/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=ik4f-UbQ 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/jpeg" width="285" height="186"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=_4b5S24Q 1x" media="all and (max-width: 539px)" type="image/jpeg" width="220" height="186"> <img loading="eager" width="220" height="186" src="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=_4b5S24Q" alt="Susanna Hamilton, ӳý Communications" typeof="foaf:Image"> </picture></a> </div> </article> </div> <div class="node__content"> <a href="/news/artificial-intelligence-yields-new-antibiotic" class="node__title"><span class="field field--name-title field--type-string field--label-hidden">Artificial intelligence yields new antibiotic</span> </a> </div> </article> </div> <div class="field__item"><article about="/news/metabolic-mutations-help-bacteria-resist-drug-treatment" class="node"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"><article class="media media--type-image media--view-mode-multiple-ct-sidebar-link-with-image"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <a href="/news/metabolic-mutations-help-bacteria-resist-drug-treatment"><picture> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=b8isJmFt 1x" media="all and (min-width: 1921px)" type="image/png" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=b8isJmFt 1x" media="all and (min-width: 1601px) and (max-width: 1920px)" type="image/png" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=kL6f-tIe 1x" media="all and (min-width: 1340px) and (max-width: 1600px)" type="image/png" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=kL6f-tIe 1x" media="all and (min-width: 800px) and (max-width: 1339px)" type="image/png" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_tablet/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=rCtW1qPW 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/png" width="285" height="186"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=XNcMzgE- 1x" media="all and (max-width: 539px)" type="image/png" width="220" height="186"> <img loading="eager" width="220" height="186" src="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=XNcMzgE-" alt="&lt;em&gt;E. coli&lt;/em&gt; cells. 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(Credit: &lt;a href=&quot;https://flic.kr/p/DzeDXq&quot; target=&quot;_blank&quot;&gt;NIAID&lt;/a&gt;)" typeof="foaf:Image"> </picture></a> </div> </article> </div> <div class="node__content"> <a href="/news/metabolic-mutations-help-bacteria-resist-drug-treatment" class="node__title"><span class="field field--name-title field--type-string field--label-hidden">Metabolic mutations help bacteria resist drug treatment</span> </a> </div> </article> </div> <div class="field__item"><article about="/news/antibiotics-alter-infectious-microenvironment-and-may-reduce-ability-immune-cells-kill-bacteria" class="node"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"><article class="media media--type-image media--view-mode-multiple-ct-sidebar-link-with-image"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <a href="/news/antibiotics-alter-infectious-microenvironment-and-may-reduce-ability-immune-cells-kill-bacteria"><picture> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=hgyNOGBm 1x" media="all and (min-width: 1921px)" type="image/jpeg" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=hgyNOGBm 1x" media="all and (min-width: 1601px) and (max-width: 1920px)" type="image/jpeg" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=b2Q0lvWp 1x" media="all and (min-width: 1340px) and (max-width: 1600px)" type="image/jpeg" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=b2Q0lvWp 1x" media="all and (min-width: 800px) and (max-width: 1339px)" type="image/jpeg" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_tablet/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=B2QbMjL2 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/jpeg" width="285" height="186"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=C15O4vNa 1x" media="all and (max-width: 539px)" type="image/jpeg" width="220" height="186"> <img loading="eager" width="220" height="186" src="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=C15O4vNa" alt="Susanna M. Hamilton, ӳý Communications" typeof="foaf:Image"> </picture></a> </div> </article> </div> <div class="node__content"> <a href="/news/antibiotics-alter-infectious-microenvironment-and-may-reduce-ability-immune-cells-kill-bacteria" class="node__title"><span class="field field--name-title field--type-string field--label-hidden">Antibiotics alter the infectious microenvironment and may reduce the ability of immune cells to kill bacteria</span> </a> </div> </article> </div> </div> </div> </div> </div> </div> <div class="clearfix text-formatted field field--name-field-text field--type-text-long field--label-hidden field__item"><p>Using a type of artificial intelligence known as deep learning, MIT researchers have discovered a class of compounds that can kill a drug-resistant bacterium that causes more than 10,000 deaths in the United States every year.</p> <p>In a study appearing in <a href="https://www.nature.com/articles/s41586-023-06887-8" target="_blank"><em>Nature</em></a>, the researchers showed that these compounds could kill methicillin-resistant Staphylococcus aureus (MRSA) grown in a lab dish and in two mouse models of MRSA infection. The compounds also show very low toxicity against human cells, making them particularly good drug candidates.</p> <p>A key innovation of the new study is that the researchers were also able to figure out what kinds of information the deep-learning model was using to make its antibiotic potency predictions. This knowledge could help researchers to design additional drugs that might work even better than the ones identified by the model.</p> <p>“The insight here was that we could see what was being learned by the models to make their predictions that certain molecules would make for good antibiotics,” said <a href="/node/7015">James Collins</a>, the Termeer Professor of Medical Engineering and Science in MIT’s Institute for Medical Engineering and Science (IMES) and Department of Biological Engineering, a core faculty member of the Wyss Institute for Biologically Inspired Engineering at Harvard University, and an institute member at the ӳý of MIT and Harvard. “Our work provides a framework that is time-efficient, resource-efficient, and mechanistically insightful, from a chemical-structure standpoint, in ways that we haven’t had to date.”</p> <p>Felix Wong, a postdoc at IMES and ӳý, and Erica Zheng, a former Harvard Medical School graduate student who was advised by Collins, are the lead authors of the study, which is part of the Antibiotics-AI Project at MIT. The mission of this project, led by Collins, is to discover new classes of antibiotics against seven types of deadly bacteria, over seven years.</p> <h2>Explainable predictions</h2> <p>MRSA, which infects more than 80,000 people in the United States every year, often causes skin infections or pneumonia. Severe cases can lead to sepsis, a potentially fatal bloodstream infection.</p> <p>Over the past several years, Collins and his colleagues in MIT’s Abdul Latif Jameel Clinic for Machine Learning in Health (Jameel Clinic) have begun using deep learning to try to find new antibiotics. Their work has yielded potential drugs against <em>Acinetobacter baumannii</em>, a bacterium that is often found in hospitals, and many other drug-resistant bacteria.</p> <p>These compounds were identified using deep learning models that can learn to identify chemical structures that are associated with antimicrobial activity. These models then sift through millions of other compounds, generating predictions of which ones may have strong antimicrobial activity.</p> <p>These types of searches have proven fruitful, but one limitation to this approach is that the models are “black boxes,” meaning that there is no way of knowing what features the model based its predictions on. If scientists knew how the models were making their predictions, it could be easier for them to identify or design additional antibiotics.</p> <p>“What we set out to do in this study was to open the black box,” Wong said. “These models consist of very large numbers of calculations that mimic neural connections, and no one really knows what's going on underneath the hood.”</p> <p>First, the researchers trained a deep learning model using substantially expanded datasets. They generated this training data by testing about 39,000 compounds for antibiotic activity against MRSA, and then fed this data, plus information on the chemical structures of the compounds, into the model.</p> <p>“You can represent basically any molecule as a chemical structure, and also you tell the model if that chemical structure is antibacterial or not,” Wong added. “The model is trained on many examples like this. If you then give it any new molecule, a new arrangement of atoms and bonds, it can tell you a probability that that compound is predicted to be antibacterial.”</p> <p>To figure out how the model was making its predictions, the researchers adapted an algorithm known as Monte Carlo tree search, which has been used to help make other deep learning models, such as AlphaGo, more explainable. This search algorithm allows the model to generate not only an estimate of each molecule’s antimicrobial activity, but also a prediction for which substructures of the molecule likely account for that activity.</p> <h2>Potent activity</h2> <p>To further narrow down the pool of candidate drugs, the researchers trained three additional deep learning models to predict whether the compounds were toxic to three different types of human cells. By combining this information with the predictions of antimicrobial activity, the researchers discovered compounds that could kill microbes while having minimal adverse effects on the human body.</p> <p>Using this collection of models, the researchers screened about 12 million compounds, all of which are commercially available. From this collection, the models identified compounds from five different classes, based on chemical substructures within the molecules, that were predicted to be active against MRSA.</p> <p>The researchers purchased about 280 compounds and tested them against MRSA grown in a lab dish, allowing them to identify two, from the same class, that appeared to be very promising antibiotic candidates. In tests in two mouse models, one of MRSA skin infection and one of MRSA systemic infection, each of those compounds reduced the MRSA population by a factor of 10.</p> <p>Experiments revealed that the compounds appear to kill bacteria by disrupting their ability to maintain an electrochemical gradient across their cell membranes. This gradient is needed for many critical cell functions, including the ability to produce ATP (molecules that cells use to store energy). <a href="/node/627296">An antibiotic candidate that Collins’ lab discovered in 2020, halicin</a>, appears to work by a similar mechanism but is specific to Gram-negative bacteria (bacteria with thin cell walls). MRSA is a Gram-positive bacterium, with thicker cell walls.</p> <p>“We have pretty strong evidence that this new structural class is active against Gram-positive pathogens by selectively dissipating the proton motive force in bacteria,” Wong said. “The molecules are attacking bacterial cell membranes selectively, in a way that does not incur substantial damage in human cell membranes. Our substantially augmented deep learning approach allowed us to predict this new structural class of antibiotics and enabled the finding that it is not toxic against human cells.”</p> <p>The researchers have shared their findings with Phare Bio, a nonprofit started by Collins and others as part of the Antibiotics-AI Project. The nonprofit now plans to do more detailed analysis of the chemical properties and potential clinical use of these compounds. Meanwhile, Collins’ lab is working on designing additional drug candidates based on the findings of the new study, as well as using the models to seek compounds that can kill other types of bacteria.</p> <p>“We are already leveraging similar approaches based on chemical substructures to design compounds <em>de novo</em>, and of course, we can readily adopt this approach out of the box to discover new classes of antibiotics against different pathogens,” Wong said.</p> <p><em>Adapted from <a href="https://news.mit.edu/2023/using-ai-mit-researchers-identify-antibiotic-candidates-1220" target="_blank">a story published by the MIT News Office</a>.</em></p> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--table-outro paragraph--view-mode--default"> <div class="field field--name-field-paragraph field--type-entity-reference-revisions field--label-hidden field__items"> <div class="field__item"> <div class="paragraph paragraph--type--table-outro-row paragraph--view-mode--default"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Funding</p> </div> <div class="clearfix text-formatted field field--name-field-text field--type-text-long field--label-hidden field__item"><p>Support for this study was provided by the James S. McDonnell Foundation, the National Institute of Allergy and Infectious Diseases, the Swiss National Science Foundation, the Banting Fellowships Program, the Volkswagen Foundation, and other sources.&nbsp;The Antibiotics-AI Project is funded by the Audacious Project, Flu Lab, the Sea Grape Foundation, the Wyss Foundation, and an anonymous donor.</p> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--table-outro-row paragraph--view-mode--default"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Paper cited</p> </div> <div class="clearfix text-formatted field field--name-field-text field--type-text-long field--label-hidden field__item"><p>Wong F, Zheng E, et al. "Discovery of a structural class of antibiotics with explainable deep learning." <a href="https://www.nature.com/articles/s41586-023-06887-8" target="_blank"><em>Nature</em></a>. Online December 20, 2023. DOI:&nbsp;10.1038/s41586-023-06887-8.</p> </div> </div> </div> </div> </div> </div> </div> </div> </div> </div> <div class="content-section container"> <div class="content-section__main"> <div class="block-node-broad-tags block block-layout-builder block-field-blocknodelong-storyfield-broad-tags"> <div class="block-node-broad-tags__row"> <div class="block-node-broad-tags__title">Tags:</div> <div class="field field--name-field-broad-tags field--type-entity-reference field--label-hidden field__items"> <div class="field__item"><a href="/broad-tags/infectious-disease-and-microbiome-0" hreflang="en">Infectious Disease and Microbiome Program</a></div> <div class="field__item"><a href="/broad-tags/machine-learning" hreflang="en">Machine learning</a></div> <div class="field__item"><a href="/broad-tags/antibiotic-resistance" hreflang="en">Antibiotic resistance</a></div> <div class="field__item"><a href="/broad-tags/infectious-disease" hreflang="en">Infectious Disease</a></div> <div class="field__item"><a href="/broad-tags/artificial-intelligence" hreflang="en">Artificial intelligence</a></div> <div class="field__item"><a href="/broad-tags/jim-collins" hreflang="en">Jim Collins</a></div> </div> </div> </div> </div> </div> Wed, 20 Dec 2023 16:30:46 +0000 tulrich@broadinstitute.org 5556221 at Metabolic mutations help bacteria resist drug treatment /news/metabolic-mutations-help-bacteria-resist-drug-treatment <span class="field field--name-title field--type-string field--label-hidden"><h1>With AI, researchers identify a new class of antibiotic candidates</h1> </span> <span class="field field--name-uid field--type-entity-reference field--label-hidden"> <span>By Tom Ulrich</span> </span> <span class="field field--name-created field--type-created field--label-hidden"><time datetime="2023-12-20T11:30:46-05:00" class="datetime">December 20, 2023</time> </span> <div class="hero-section container"> <div class="hero-section__row row"> <div class="hero-section__content hero-section__content_left col-6"> <div class="hero-section__breadcrumbs"> <div class="block block-system block-system-breadcrumb-block"> <nav class="breadcrumb" role="navigation" aria-labelledby="system-breadcrumb"> <h2 id="system-breadcrumb" class="visually-hidden">Breadcrumb</h2> <ol> <li> <a href="/">Home</a> </li> <li> <a href="/news">News</a> </li> </ol> </nav> </div> </div> <div class="hero-section__title"> <div class="block block-layout-builder block-field-blocknodelong-storytitle"> <span class="field field--name-title field--type-string field--label-hidden"><h1>With AI, researchers identify a new class of antibiotic candidates</h1> </span> </div> </div> <div class="hero-section__description"> <div class="block block-layout-builder block-field-blocknodelong-storybody"> <div class="clearfix text-formatted field field--name-body field--type-text-with-summary field--label-hidden field__item"><p>New compounds can kill methicillin-resistant <em>Staphylococcus aureus</em> (MRSA), an often-lethal bacterial pathogen</p> </div> </div> </div> <div class="hero-section__author"> <div class="block block-layout-builder block-extra-field-blocknodelong-storyextra-field-author-custom"> By Anne Trafton, MIT News Office </div> </div> <div class="hero-section__date"> <div class="block block-layout-builder block-field-blocknodelong-storycreated"> <span class="field field--name-created field--type-created field--label-hidden"><time datetime="2023-12-20T11:30:46-05:00" title="Wednesday, December 20, 2023 - 11:30" class="datetime">December 20, 2023</time> </span> </div> </div> </div> <div class="hero-section__right col-6"> <div class="hero-section__image"> <div class="block block-layout-builder block-field-blocknodelong-storyfield-image"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"> <article class="media media--type-image media--view-mode-multiple-content-types-header"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <picture> <source srcset="/files/styles/multiple_ct_header_desktop_xl/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=Zd0fBLN4 1x" media="all and (min-width: 1921px)" type="image/png" width="754" height="503"> <source srcset="/files/styles/multiple_ct_header_desktop_xl/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=Zd0fBLN4 1x" media="all and (min-width: 1601px) and (max-width: 1920px)" type="image/png" width="754" height="503"> <source srcset="/files/styles/multiple_ct_header_desktop/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=MumTZr7t 1x" media="all and (min-width: 1340px) and (max-width: 1600px)" type="image/png" width="736" height="520"> <source srcset="/files/styles/multiple_ct_header_laptop/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=sYWpSKYt 1x" media="all and (min-width: 800px) and (max-width: 1339px)" type="image/png" width="641" height="451"> <source srcset="/files/styles/multiple_ct_header_tablet/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=Um6VAVo5 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/png" width="706" height="417"> <source srcset="/files/styles/multiple_ct_header_phone/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=qRA0Ru2a 1x" media="all and (max-width: 539px)" type="image/png" width="499" height="294"> <img loading="eager" width="499" height="294" src="/files/styles/multiple_ct_header_phone/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=qRA0Ru2a" alt="Methicillin-resistant Staphylococcus aureus (gold) on the remains of an immune cell (red)" title="Methicillin-resistant Staphylococcus aureus (gold) on the remains of an immune cell (red)" typeof="foaf:Image"> </picture> </div> <div class="media-caption"> <div class="media-caption__description"> Methicillin-resistant Staphylococcus aureus (gold) on the remains of an immune cell (red) </div> </div> </article> </div> </div> </div> </div> </div> </div> <div class="content-section container"> <div class="content-section__main"> <div class="block block-better-social-sharing-buttons block-social-sharing-buttons-block"> <div style="display: none"><link rel="preload" href="/modules/contrib/better_social_sharing_buttons/assets/dist/sprites/social-icons--no-color.svg" as="image" type="image/svg+xml" crossorigin="anonymous"></div> <div class="social-sharing-buttons"> <a href="https://www.facebook.com/sharer/sharer.php?u=/taxonomy/term/991/feed&amp;title=" target="_blank" title="Share to Facebook" aria-label="Share to Facebook" class="social-sharing-buttons-button share-facebook" rel="noopener"> <svg aria-hidden="true" width="32px" height="32px" style="border-radius:100%;"> <use href="/modules/contrib/better_social_sharing_buttons/assets/dist/sprites/social-icons--no-color.svg#facebook" 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field--type-entity-reference-revisions field--label-hidden field__items"> <div class="field__item"> <div class="paragraph paragraph--type--text-with-sidebar text-with-sidebar"> <div class="field field--name-field-sidebar field--type-entity-reference-revisions field--label-hidden field__items"> <div class="field__item"> <div class="paragraph paragraph--type--sidebar-menu sidebar-menu"> <div class="sidebar-menu__col"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Related people</p> </div> <div class="field field--name-field-links field--type-link field--label-hidden field__items"> <div class="field__item"><a href="/bios/james-collins">James Collins</a></div> </div> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--sidebar-menu sidebar-menu"> <div class="sidebar-menu__col"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Related programs</p> </div> <div class="field field--name-field-links field--type-link field--label-hidden field__items"> <div class="field__item"><a href="/infectious-disease-microbiome">Infectious Disease and Microbiome Program</a></div> </div> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--sidebar-articles sidebar-articles"> <div class="sidebar-articles__col"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Related news</p> </div> <div class="field field--name-field-content-reference field--type-entity-reference field--label-hidden field__items"> <div class="field__item"><article about="/news/artificial-intelligence-yields-new-antibiotic" class="node"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"><article class="media media--type-image media--view-mode-multiple-ct-sidebar-link-with-image"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <a href="/news/artificial-intelligence-yields-new-antibiotic"><picture> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=2Oh8TkmM 1x" media="all and (min-width: 1921px)" type="image/jpeg" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=2Oh8TkmM 1x" media="all and (min-width: 1601px) and (max-width: 1920px)" type="image/jpeg" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=lvS73u77 1x" media="all and (min-width: 1340px) and (max-width: 1600px)" type="image/jpeg" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=lvS73u77 1x" media="all and (min-width: 800px) and (max-width: 1339px)" type="image/jpeg" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_tablet/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=ik4f-UbQ 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/jpeg" width="285" height="186"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=_4b5S24Q 1x" media="all and (max-width: 539px)" type="image/jpeg" width="220" height="186"> <img loading="eager" width="220" height="186" src="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=_4b5S24Q" alt="Susanna Hamilton, ӳý Communications" typeof="foaf:Image"> </picture></a> </div> </article> </div> <div class="node__content"> <a href="/news/artificial-intelligence-yields-new-antibiotic" class="node__title"><span class="field field--name-title field--type-string field--label-hidden">Artificial intelligence yields new antibiotic</span> </a> </div> </article> </div> <div class="field__item"><article about="/news/metabolic-mutations-help-bacteria-resist-drug-treatment" class="node"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"><article class="media media--type-image media--view-mode-multiple-ct-sidebar-link-with-image"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <a href="/news/metabolic-mutations-help-bacteria-resist-drug-treatment"><picture> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=b8isJmFt 1x" media="all and (min-width: 1921px)" type="image/png" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=b8isJmFt 1x" media="all and (min-width: 1601px) and (max-width: 1920px)" type="image/png" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=kL6f-tIe 1x" media="all and (min-width: 1340px) and (max-width: 1600px)" type="image/png" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=kL6f-tIe 1x" media="all and (min-width: 800px) and (max-width: 1339px)" type="image/png" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_tablet/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=rCtW1qPW 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/png" width="285" height="186"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=XNcMzgE- 1x" media="all and (max-width: 539px)" type="image/png" width="220" height="186"> <img loading="eager" width="220" height="186" src="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=XNcMzgE-" alt="&lt;em&gt;E. coli&lt;/em&gt; cells. (Credit: &lt;a href=&quot;https://flic.kr/p/DzeDXq&quot; target=&quot;_blank&quot;&gt;NIAID&lt;/a&gt;)" title="&lt;em&gt;E. coli&lt;/em&gt; cells. (Credit: &lt;a href=&quot;https://flic.kr/p/DzeDXq&quot; target=&quot;_blank&quot;&gt;NIAID&lt;/a&gt;)" typeof="foaf:Image"> </picture></a> </div> </article> </div> <div class="node__content"> <a href="/news/metabolic-mutations-help-bacteria-resist-drug-treatment" class="node__title"><span class="field field--name-title field--type-string field--label-hidden">Metabolic mutations help bacteria resist drug treatment</span> </a> </div> </article> </div> <div class="field__item"><article about="/news/antibiotics-alter-infectious-microenvironment-and-may-reduce-ability-immune-cells-kill-bacteria" class="node"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"><article class="media media--type-image media--view-mode-multiple-ct-sidebar-link-with-image"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <a href="/news/antibiotics-alter-infectious-microenvironment-and-may-reduce-ability-immune-cells-kill-bacteria"><picture> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=hgyNOGBm 1x" media="all and (min-width: 1921px)" type="image/jpeg" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=hgyNOGBm 1x" media="all and (min-width: 1601px) and (max-width: 1920px)" type="image/jpeg" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=b2Q0lvWp 1x" media="all and (min-width: 1340px) and (max-width: 1600px)" type="image/jpeg" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=b2Q0lvWp 1x" media="all and (min-width: 800px) and (max-width: 1339px)" type="image/jpeg" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_tablet/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=B2QbMjL2 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/jpeg" width="285" height="186"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=C15O4vNa 1x" media="all and (max-width: 539px)" type="image/jpeg" width="220" height="186"> <img loading="eager" width="220" height="186" src="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=C15O4vNa" alt="Susanna M. Hamilton, ӳý Communications" typeof="foaf:Image"> </picture></a> </div> </article> </div> <div class="node__content"> <a href="/news/antibiotics-alter-infectious-microenvironment-and-may-reduce-ability-immune-cells-kill-bacteria" class="node__title"><span class="field field--name-title field--type-string field--label-hidden">Antibiotics alter the infectious microenvironment and may reduce the ability of immune cells to kill bacteria</span> </a> </div> </article> </div> </div> </div> </div> </div> </div> <div class="clearfix text-formatted field field--name-field-text field--type-text-long field--label-hidden field__item"><p>Using a type of artificial intelligence known as deep learning, MIT researchers have discovered a class of compounds that can kill a drug-resistant bacterium that causes more than 10,000 deaths in the United States every year.</p> <p>In a study appearing in <a href="https://www.nature.com/articles/s41586-023-06887-8" target="_blank"><em>Nature</em></a>, the researchers showed that these compounds could kill methicillin-resistant Staphylococcus aureus (MRSA) grown in a lab dish and in two mouse models of MRSA infection. The compounds also show very low toxicity against human cells, making them particularly good drug candidates.</p> <p>A key innovation of the new study is that the researchers were also able to figure out what kinds of information the deep-learning model was using to make its antibiotic potency predictions. This knowledge could help researchers to design additional drugs that might work even better than the ones identified by the model.</p> <p>“The insight here was that we could see what was being learned by the models to make their predictions that certain molecules would make for good antibiotics,” said <a href="/node/7015">James Collins</a>, the Termeer Professor of Medical Engineering and Science in MIT’s Institute for Medical Engineering and Science (IMES) and Department of Biological Engineering, a core faculty member of the Wyss Institute for Biologically Inspired Engineering at Harvard University, and an institute member at the ӳý of MIT and Harvard. “Our work provides a framework that is time-efficient, resource-efficient, and mechanistically insightful, from a chemical-structure standpoint, in ways that we haven’t had to date.”</p> <p>Felix Wong, a postdoc at IMES and ӳý, and Erica Zheng, a former Harvard Medical School graduate student who was advised by Collins, are the lead authors of the study, which is part of the Antibiotics-AI Project at MIT. The mission of this project, led by Collins, is to discover new classes of antibiotics against seven types of deadly bacteria, over seven years.</p> <h2>Explainable predictions</h2> <p>MRSA, which infects more than 80,000 people in the United States every year, often causes skin infections or pneumonia. Severe cases can lead to sepsis, a potentially fatal bloodstream infection.</p> <p>Over the past several years, Collins and his colleagues in MIT’s Abdul Latif Jameel Clinic for Machine Learning in Health (Jameel Clinic) have begun using deep learning to try to find new antibiotics. Their work has yielded potential drugs against <em>Acinetobacter baumannii</em>, a bacterium that is often found in hospitals, and many other drug-resistant bacteria.</p> <p>These compounds were identified using deep learning models that can learn to identify chemical structures that are associated with antimicrobial activity. These models then sift through millions of other compounds, generating predictions of which ones may have strong antimicrobial activity.</p> <p>These types of searches have proven fruitful, but one limitation to this approach is that the models are “black boxes,” meaning that there is no way of knowing what features the model based its predictions on. If scientists knew how the models were making their predictions, it could be easier for them to identify or design additional antibiotics.</p> <p>“What we set out to do in this study was to open the black box,” Wong said. “These models consist of very large numbers of calculations that mimic neural connections, and no one really knows what's going on underneath the hood.”</p> <p>First, the researchers trained a deep learning model using substantially expanded datasets. They generated this training data by testing about 39,000 compounds for antibiotic activity against MRSA, and then fed this data, plus information on the chemical structures of the compounds, into the model.</p> <p>“You can represent basically any molecule as a chemical structure, and also you tell the model if that chemical structure is antibacterial or not,” Wong added. “The model is trained on many examples like this. If you then give it any new molecule, a new arrangement of atoms and bonds, it can tell you a probability that that compound is predicted to be antibacterial.”</p> <p>To figure out how the model was making its predictions, the researchers adapted an algorithm known as Monte Carlo tree search, which has been used to help make other deep learning models, such as AlphaGo, more explainable. This search algorithm allows the model to generate not only an estimate of each molecule’s antimicrobial activity, but also a prediction for which substructures of the molecule likely account for that activity.</p> <h2>Potent activity</h2> <p>To further narrow down the pool of candidate drugs, the researchers trained three additional deep learning models to predict whether the compounds were toxic to three different types of human cells. By combining this information with the predictions of antimicrobial activity, the researchers discovered compounds that could kill microbes while having minimal adverse effects on the human body.</p> <p>Using this collection of models, the researchers screened about 12 million compounds, all of which are commercially available. From this collection, the models identified compounds from five different classes, based on chemical substructures within the molecules, that were predicted to be active against MRSA.</p> <p>The researchers purchased about 280 compounds and tested them against MRSA grown in a lab dish, allowing them to identify two, from the same class, that appeared to be very promising antibiotic candidates. In tests in two mouse models, one of MRSA skin infection and one of MRSA systemic infection, each of those compounds reduced the MRSA population by a factor of 10.</p> <p>Experiments revealed that the compounds appear to kill bacteria by disrupting their ability to maintain an electrochemical gradient across their cell membranes. This gradient is needed for many critical cell functions, including the ability to produce ATP (molecules that cells use to store energy). <a href="/node/627296">An antibiotic candidate that Collins’ lab discovered in 2020, halicin</a>, appears to work by a similar mechanism but is specific to Gram-negative bacteria (bacteria with thin cell walls). MRSA is a Gram-positive bacterium, with thicker cell walls.</p> <p>“We have pretty strong evidence that this new structural class is active against Gram-positive pathogens by selectively dissipating the proton motive force in bacteria,” Wong said. “The molecules are attacking bacterial cell membranes selectively, in a way that does not incur substantial damage in human cell membranes. Our substantially augmented deep learning approach allowed us to predict this new structural class of antibiotics and enabled the finding that it is not toxic against human cells.”</p> <p>The researchers have shared their findings with Phare Bio, a nonprofit started by Collins and others as part of the Antibiotics-AI Project. The nonprofit now plans to do more detailed analysis of the chemical properties and potential clinical use of these compounds. Meanwhile, Collins’ lab is working on designing additional drug candidates based on the findings of the new study, as well as using the models to seek compounds that can kill other types of bacteria.</p> <p>“We are already leveraging similar approaches based on chemical substructures to design compounds <em>de novo</em>, and of course, we can readily adopt this approach out of the box to discover new classes of antibiotics against different pathogens,” Wong said.</p> <p><em>Adapted from <a href="https://news.mit.edu/2023/using-ai-mit-researchers-identify-antibiotic-candidates-1220" target="_blank">a story published by the MIT News Office</a>.</em></p> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--table-outro paragraph--view-mode--default"> <div class="field field--name-field-paragraph field--type-entity-reference-revisions field--label-hidden field__items"> <div class="field__item"> <div class="paragraph paragraph--type--table-outro-row paragraph--view-mode--default"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Funding</p> </div> <div class="clearfix text-formatted field field--name-field-text field--type-text-long field--label-hidden field__item"><p>Support for this study was provided by the James S. McDonnell Foundation, the National Institute of Allergy and Infectious Diseases, the Swiss National Science Foundation, the Banting Fellowships Program, the Volkswagen Foundation, and other sources.&nbsp;The Antibiotics-AI Project is funded by the Audacious Project, Flu Lab, the Sea Grape Foundation, the Wyss Foundation, and an anonymous donor.</p> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--table-outro-row paragraph--view-mode--default"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Paper cited</p> </div> <div class="clearfix text-formatted field field--name-field-text field--type-text-long field--label-hidden field__item"><p>Wong F, Zheng E, et al. "Discovery of a structural class of antibiotics with explainable deep learning." <a href="https://www.nature.com/articles/s41586-023-06887-8" target="_blank"><em>Nature</em></a>. Online December 20, 2023. DOI:&nbsp;10.1038/s41586-023-06887-8.</p> </div> </div> </div> </div> </div> </div> </div> </div> </div> </div> <div class="content-section container"> <div class="content-section__main"> <div class="block-node-broad-tags block block-layout-builder block-field-blocknodelong-storyfield-broad-tags"> <div class="block-node-broad-tags__row"> <div class="block-node-broad-tags__title">Tags:</div> <div class="field field--name-field-broad-tags field--type-entity-reference field--label-hidden field__items"> <div class="field__item"><a href="/broad-tags/infectious-disease-and-microbiome-0" hreflang="en">Infectious Disease and Microbiome Program</a></div> <div class="field__item"><a href="/broad-tags/machine-learning" hreflang="en">Machine learning</a></div> <div class="field__item"><a href="/broad-tags/antibiotic-resistance" hreflang="en">Antibiotic resistance</a></div> <div class="field__item"><a href="/broad-tags/infectious-disease" hreflang="en">Infectious Disease</a></div> <div class="field__item"><a href="/broad-tags/artificial-intelligence" hreflang="en">Artificial intelligence</a></div> <div class="field__item"><a href="/broad-tags/jim-collins" hreflang="en">Jim Collins</a></div> </div> </div> </div> </div> </div> Thu, 18 Feb 2021 19:13:41 +0000 tulrich@broadinstitute.org 769761 at Antibiotics alter the infectious microenvironment and may reduce the ability of immune cells to kill bacteria /news/antibiotics-alter-infectious-microenvironment-and-may-reduce-ability-immune-cells-kill-bacteria <span class="field field--name-title field--type-string field--label-hidden"><h1>With AI, researchers identify a new class of antibiotic candidates</h1> </span> <span class="field field--name-uid field--type-entity-reference field--label-hidden"> <span>By Tom Ulrich</span> </span> <span class="field field--name-created field--type-created field--label-hidden"><time datetime="2023-12-20T11:30:46-05:00" class="datetime">December 20, 2023</time> </span> <div class="hero-section container"> <div class="hero-section__row row"> <div class="hero-section__content hero-section__content_left col-6"> <div class="hero-section__breadcrumbs"> <div class="block block-system block-system-breadcrumb-block"> <nav class="breadcrumb" role="navigation" aria-labelledby="system-breadcrumb"> <h2 id="system-breadcrumb" class="visually-hidden">Breadcrumb</h2> <ol> <li> <a href="/">Home</a> </li> <li> <a href="/news">News</a> </li> </ol> </nav> </div> </div> <div class="hero-section__title"> <div class="block block-layout-builder block-field-blocknodelong-storytitle"> <span class="field field--name-title field--type-string field--label-hidden"><h1>With AI, researchers identify a new class of antibiotic candidates</h1> </span> </div> </div> <div class="hero-section__description"> <div class="block block-layout-builder block-field-blocknodelong-storybody"> <div class="clearfix text-formatted field field--name-body field--type-text-with-summary field--label-hidden field__item"><p>New compounds can kill methicillin-resistant <em>Staphylococcus aureus</em> (MRSA), an often-lethal bacterial pathogen</p> </div> </div> </div> <div class="hero-section__author"> <div class="block block-layout-builder block-extra-field-blocknodelong-storyextra-field-author-custom"> By Anne Trafton, MIT News Office </div> </div> <div class="hero-section__date"> <div class="block block-layout-builder block-field-blocknodelong-storycreated"> <span class="field field--name-created field--type-created field--label-hidden"><time datetime="2023-12-20T11:30:46-05:00" title="Wednesday, December 20, 2023 - 11:30" class="datetime">December 20, 2023</time> </span> </div> </div> </div> <div class="hero-section__right col-6"> <div class="hero-section__image"> <div class="block block-layout-builder block-field-blocknodelong-storyfield-image"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"> <article class="media media--type-image media--view-mode-multiple-content-types-header"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <picture> <source srcset="/files/styles/multiple_ct_header_desktop_xl/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=Zd0fBLN4 1x" media="all and (min-width: 1921px)" type="image/png" width="754" height="503"> <source srcset="/files/styles/multiple_ct_header_desktop_xl/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=Zd0fBLN4 1x" media="all and (min-width: 1601px) and (max-width: 1920px)" type="image/png" width="754" height="503"> <source srcset="/files/styles/multiple_ct_header_desktop/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=MumTZr7t 1x" media="all and (min-width: 1340px) and (max-width: 1600px)" type="image/png" width="736" height="520"> <source srcset="/files/styles/multiple_ct_header_laptop/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=sYWpSKYt 1x" media="all and (min-width: 800px) and (max-width: 1339px)" type="image/png" width="641" height="451"> <source srcset="/files/styles/multiple_ct_header_tablet/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=Um6VAVo5 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/png" width="706" height="417"> <source srcset="/files/styles/multiple_ct_header_phone/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=qRA0Ru2a 1x" media="all and (max-width: 539px)" type="image/png" width="499" height="294"> <img loading="eager" width="499" height="294" src="/files/styles/multiple_ct_header_phone/public/Scanning%20electron%20micrograph%20MRSA_crop.png?h=ae0fde30&amp;itok=qRA0Ru2a" alt="Methicillin-resistant Staphylococcus aureus (gold) on the remains of an immune cell (red)" title="Methicillin-resistant Staphylococcus aureus (gold) on the remains of an immune cell (red)" typeof="foaf:Image"> </picture> </div> <div class="media-caption"> <div class="media-caption__description"> Methicillin-resistant Staphylococcus aureus (gold) on the remains of an immune cell (red) </div> </div> </article> </div> </div> </div> </div> </div> </div> <div class="content-section container"> <div class="content-section__main"> <div class="block block-better-social-sharing-buttons block-social-sharing-buttons-block"> <div style="display: none"><link rel="preload" href="/modules/contrib/better_social_sharing_buttons/assets/dist/sprites/social-icons--no-color.svg" as="image" type="image/svg+xml" crossorigin="anonymous"></div> <div class="social-sharing-buttons"> <a href="https://www.facebook.com/sharer/sharer.php?u=/taxonomy/term/991/feed&amp;title=" target="_blank" title="Share to Facebook" aria-label="Share to Facebook" class="social-sharing-buttons-button share-facebook" 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href="/modules/contrib/better_social_sharing_buttons/assets/dist/sprites/social-icons--no-color.svg#email" /> </svg> </a> </div> </div> <div class="block block-layout-builder block-field-blocknodelong-storyfield-content-paragraphs"> <div class="field field--name-field-content-paragraphs field--type-entity-reference-revisions field--label-hidden field__items"> <div class="field__item"> <div class="paragraph paragraph--type--text-with-sidebar text-with-sidebar"> <div class="field field--name-field-sidebar field--type-entity-reference-revisions field--label-hidden field__items"> <div class="field__item"> <div class="paragraph paragraph--type--sidebar-menu sidebar-menu"> <div class="sidebar-menu__col"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Related people</p> </div> <div class="field field--name-field-links field--type-link field--label-hidden field__items"> <div class="field__item"><a href="/bios/james-collins">James Collins</a></div> </div> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--sidebar-menu sidebar-menu"> <div class="sidebar-menu__col"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Related programs</p> </div> <div class="field field--name-field-links field--type-link field--label-hidden field__items"> <div class="field__item"><a href="/infectious-disease-microbiome">Infectious Disease and Microbiome Program</a></div> </div> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--sidebar-articles sidebar-articles"> <div class="sidebar-articles__col"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Related news</p> </div> <div class="field field--name-field-content-reference field--type-entity-reference field--label-hidden field__items"> <div class="field__item"><article about="/news/artificial-intelligence-yields-new-antibiotic" class="node"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"><article class="media media--type-image media--view-mode-multiple-ct-sidebar-link-with-image"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <a href="/news/artificial-intelligence-yields-new-antibiotic"><picture> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=2Oh8TkmM 1x" media="all and (min-width: 1921px)" type="image/jpeg" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=2Oh8TkmM 1x" media="all and (min-width: 1601px) and (max-width: 1920px)" type="image/jpeg" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=lvS73u77 1x" media="all and (min-width: 1340px) and (max-width: 1600px)" type="image/jpeg" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=lvS73u77 1x" media="all and (min-width: 800px) and (max-width: 1339px)" type="image/jpeg" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_tablet/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=ik4f-UbQ 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/jpeg" width="285" height="186"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=_4b5S24Q 1x" media="all and (max-width: 539px)" type="image/jpeg" width="220" height="186"> <img loading="eager" width="220" height="186" src="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2020/DrugHub_v2%20%281%29.jpg?h=d3e04ee7&amp;itok=_4b5S24Q" alt="Susanna Hamilton, ӳý Communications" typeof="foaf:Image"> </picture></a> </div> </article> </div> <div class="node__content"> <a href="/news/artificial-intelligence-yields-new-antibiotic" class="node__title"><span class="field field--name-title field--type-string field--label-hidden">Artificial intelligence yields new antibiotic</span> </a> </div> </article> </div> <div class="field__item"><article about="/news/metabolic-mutations-help-bacteria-resist-drug-treatment" class="node"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"><article class="media media--type-image media--view-mode-multiple-ct-sidebar-link-with-image"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <a href="/news/metabolic-mutations-help-bacteria-resist-drug-treatment"><picture> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=b8isJmFt 1x" media="all and (min-width: 1921px)" type="image/png" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=b8isJmFt 1x" media="all and (min-width: 1601px) and (max-width: 1920px)" type="image/png" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=kL6f-tIe 1x" media="all and (min-width: 1340px) and (max-width: 1600px)" type="image/png" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=kL6f-tIe 1x" media="all and (min-width: 800px) and (max-width: 1339px)" type="image/png" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_tablet/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=rCtW1qPW 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/png" width="285" height="186"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=XNcMzgE- 1x" media="all and (max-width: 539px)" type="image/png" width="220" height="186"> <img loading="eager" width="220" height="186" src="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2021/E_coli_NIAID_24661308922_3eb66388f6_o_cropped.png?h=d3e04ee7&amp;itok=XNcMzgE-" alt="&lt;em&gt;E. coli&lt;/em&gt; cells. (Credit: &lt;a href=&quot;https://flic.kr/p/DzeDXq&quot; target=&quot;_blank&quot;&gt;NIAID&lt;/a&gt;)" title="&lt;em&gt;E. coli&lt;/em&gt; cells. (Credit: &lt;a href=&quot;https://flic.kr/p/DzeDXq&quot; target=&quot;_blank&quot;&gt;NIAID&lt;/a&gt;)" typeof="foaf:Image"> </picture></a> </div> </article> </div> <div class="node__content"> <a href="/news/metabolic-mutations-help-bacteria-resist-drug-treatment" class="node__title"><span class="field field--name-title field--type-string field--label-hidden">Metabolic mutations help bacteria resist drug treatment</span> </a> </div> </article> </div> <div class="field__item"><article about="/news/antibiotics-alter-infectious-microenvironment-and-may-reduce-ability-immune-cells-kill-bacteria" class="node"> <div class="field field--name-field-image field--type-entity-reference field--label-hidden field__item"><article class="media media--type-image media--view-mode-multiple-ct-sidebar-link-with-image"> <div class="field field--name-field-media-image field--type-image field--label-hidden field__item"> <a href="/news/antibiotics-alter-infectious-microenvironment-and-may-reduce-ability-immune-cells-kill-bacteria"><picture> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=hgyNOGBm 1x" media="all and (min-width: 1921px)" type="image/jpeg" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop_xl/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=hgyNOGBm 1x" media="all and (min-width: 1601px) and (max-width: 1920px)" type="image/jpeg" width="104" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=b2Q0lvWp 1x" media="all and (min-width: 1340px) and (max-width: 1600px)" type="image/jpeg" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_desktop/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=b2Q0lvWp 1x" media="all and (min-width: 800px) and (max-width: 1339px)" type="image/jpeg" width="87" height="104"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_tablet/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=B2QbMjL2 1x" media="all and (min-width: 540px) and (max-width: 799px)" type="image/jpeg" width="285" height="186"> <source srcset="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=C15O4vNa 1x" media="all and (max-width: 539px)" type="image/jpeg" width="220" height="186"> <img loading="eager" width="220" height="186" src="/files/styles/multiple_ct_sidebar_link_with_image_phone/public/news/images/2017/Antibiotic-induced-changes.jpg?h=d3e04ee7&amp;itok=C15O4vNa" alt="Susanna M. Hamilton, ӳý Communications" typeof="foaf:Image"> </picture></a> </div> </article> </div> <div class="node__content"> <a href="/news/antibiotics-alter-infectious-microenvironment-and-may-reduce-ability-immune-cells-kill-bacteria" class="node__title"><span class="field field--name-title field--type-string field--label-hidden">Antibiotics alter the infectious microenvironment and may reduce the ability of immune cells to kill bacteria</span> </a> </div> </article> </div> </div> </div> </div> </div> </div> <div class="clearfix text-formatted field field--name-field-text field--type-text-long field--label-hidden field__item"><p>Using a type of artificial intelligence known as deep learning, MIT researchers have discovered a class of compounds that can kill a drug-resistant bacterium that causes more than 10,000 deaths in the United States every year.</p> <p>In a study appearing in <a href="https://www.nature.com/articles/s41586-023-06887-8" target="_blank"><em>Nature</em></a>, the researchers showed that these compounds could kill methicillin-resistant Staphylococcus aureus (MRSA) grown in a lab dish and in two mouse models of MRSA infection. The compounds also show very low toxicity against human cells, making them particularly good drug candidates.</p> <p>A key innovation of the new study is that the researchers were also able to figure out what kinds of information the deep-learning model was using to make its antibiotic potency predictions. This knowledge could help researchers to design additional drugs that might work even better than the ones identified by the model.</p> <p>“The insight here was that we could see what was being learned by the models to make their predictions that certain molecules would make for good antibiotics,” said <a href="/node/7015">James Collins</a>, the Termeer Professor of Medical Engineering and Science in MIT’s Institute for Medical Engineering and Science (IMES) and Department of Biological Engineering, a core faculty member of the Wyss Institute for Biologically Inspired Engineering at Harvard University, and an institute member at the ӳý of MIT and Harvard. “Our work provides a framework that is time-efficient, resource-efficient, and mechanistically insightful, from a chemical-structure standpoint, in ways that we haven’t had to date.”</p> <p>Felix Wong, a postdoc at IMES and ӳý, and Erica Zheng, a former Harvard Medical School graduate student who was advised by Collins, are the lead authors of the study, which is part of the Antibiotics-AI Project at MIT. The mission of this project, led by Collins, is to discover new classes of antibiotics against seven types of deadly bacteria, over seven years.</p> <h2>Explainable predictions</h2> <p>MRSA, which infects more than 80,000 people in the United States every year, often causes skin infections or pneumonia. Severe cases can lead to sepsis, a potentially fatal bloodstream infection.</p> <p>Over the past several years, Collins and his colleagues in MIT’s Abdul Latif Jameel Clinic for Machine Learning in Health (Jameel Clinic) have begun using deep learning to try to find new antibiotics. Their work has yielded potential drugs against <em>Acinetobacter baumannii</em>, a bacterium that is often found in hospitals, and many other drug-resistant bacteria.</p> <p>These compounds were identified using deep learning models that can learn to identify chemical structures that are associated with antimicrobial activity. These models then sift through millions of other compounds, generating predictions of which ones may have strong antimicrobial activity.</p> <p>These types of searches have proven fruitful, but one limitation to this approach is that the models are “black boxes,” meaning that there is no way of knowing what features the model based its predictions on. If scientists knew how the models were making their predictions, it could be easier for them to identify or design additional antibiotics.</p> <p>“What we set out to do in this study was to open the black box,” Wong said. “These models consist of very large numbers of calculations that mimic neural connections, and no one really knows what's going on underneath the hood.”</p> <p>First, the researchers trained a deep learning model using substantially expanded datasets. They generated this training data by testing about 39,000 compounds for antibiotic activity against MRSA, and then fed this data, plus information on the chemical structures of the compounds, into the model.</p> <p>“You can represent basically any molecule as a chemical structure, and also you tell the model if that chemical structure is antibacterial or not,” Wong added. “The model is trained on many examples like this. If you then give it any new molecule, a new arrangement of atoms and bonds, it can tell you a probability that that compound is predicted to be antibacterial.”</p> <p>To figure out how the model was making its predictions, the researchers adapted an algorithm known as Monte Carlo tree search, which has been used to help make other deep learning models, such as AlphaGo, more explainable. This search algorithm allows the model to generate not only an estimate of each molecule’s antimicrobial activity, but also a prediction for which substructures of the molecule likely account for that activity.</p> <h2>Potent activity</h2> <p>To further narrow down the pool of candidate drugs, the researchers trained three additional deep learning models to predict whether the compounds were toxic to three different types of human cells. By combining this information with the predictions of antimicrobial activity, the researchers discovered compounds that could kill microbes while having minimal adverse effects on the human body.</p> <p>Using this collection of models, the researchers screened about 12 million compounds, all of which are commercially available. From this collection, the models identified compounds from five different classes, based on chemical substructures within the molecules, that were predicted to be active against MRSA.</p> <p>The researchers purchased about 280 compounds and tested them against MRSA grown in a lab dish, allowing them to identify two, from the same class, that appeared to be very promising antibiotic candidates. In tests in two mouse models, one of MRSA skin infection and one of MRSA systemic infection, each of those compounds reduced the MRSA population by a factor of 10.</p> <p>Experiments revealed that the compounds appear to kill bacteria by disrupting their ability to maintain an electrochemical gradient across their cell membranes. This gradient is needed for many critical cell functions, including the ability to produce ATP (molecules that cells use to store energy). <a href="/node/627296">An antibiotic candidate that Collins’ lab discovered in 2020, halicin</a>, appears to work by a similar mechanism but is specific to Gram-negative bacteria (bacteria with thin cell walls). MRSA is a Gram-positive bacterium, with thicker cell walls.</p> <p>“We have pretty strong evidence that this new structural class is active against Gram-positive pathogens by selectively dissipating the proton motive force in bacteria,” Wong said. “The molecules are attacking bacterial cell membranes selectively, in a way that does not incur substantial damage in human cell membranes. Our substantially augmented deep learning approach allowed us to predict this new structural class of antibiotics and enabled the finding that it is not toxic against human cells.”</p> <p>The researchers have shared their findings with Phare Bio, a nonprofit started by Collins and others as part of the Antibiotics-AI Project. The nonprofit now plans to do more detailed analysis of the chemical properties and potential clinical use of these compounds. Meanwhile, Collins’ lab is working on designing additional drug candidates based on the findings of the new study, as well as using the models to seek compounds that can kill other types of bacteria.</p> <p>“We are already leveraging similar approaches based on chemical substructures to design compounds <em>de novo</em>, and of course, we can readily adopt this approach out of the box to discover new classes of antibiotics against different pathogens,” Wong said.</p> <p><em>Adapted from <a href="https://news.mit.edu/2023/using-ai-mit-researchers-identify-antibiotic-candidates-1220" target="_blank">a story published by the MIT News Office</a>.</em></p> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--table-outro paragraph--view-mode--default"> <div class="field field--name-field-paragraph field--type-entity-reference-revisions field--label-hidden field__items"> <div class="field__item"> <div class="paragraph paragraph--type--table-outro-row paragraph--view-mode--default"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Funding</p> </div> <div class="clearfix text-formatted field field--name-field-text field--type-text-long field--label-hidden field__item"><p>Support for this study was provided by the James S. McDonnell Foundation, the National Institute of Allergy and Infectious Diseases, the Swiss National Science Foundation, the Banting Fellowships Program, the Volkswagen Foundation, and other sources.&nbsp;The Antibiotics-AI Project is funded by the Audacious Project, Flu Lab, the Sea Grape Foundation, the Wyss Foundation, and an anonymous donor.</p> </div> </div> </div> <div class="field__item"> <div class="paragraph paragraph--type--table-outro-row paragraph--view-mode--default"> <div class="clearfix text-formatted field field--name-field-heading field--type-text field--label-hidden field__item"><p>Paper cited</p> </div> <div class="clearfix text-formatted field field--name-field-text field--type-text-long field--label-hidden field__item"><p>Wong F, Zheng E, et al. "Discovery of a structural class of antibiotics with explainable deep learning." <a href="https://www.nature.com/articles/s41586-023-06887-8" target="_blank"><em>Nature</em></a>. Online December 20, 2023. DOI:&nbsp;10.1038/s41586-023-06887-8.</p> </div> </div> </div> </div> </div> </div> </div> </div> </div> </div> <div class="content-section container"> <div class="content-section__main"> <div class="block-node-broad-tags block block-layout-builder block-field-blocknodelong-storyfield-broad-tags"> <div class="block-node-broad-tags__row"> <div class="block-node-broad-tags__title">Tags:</div> <div class="field field--name-field-broad-tags field--type-entity-reference field--label-hidden field__items"> <div class="field__item"><a href="/broad-tags/infectious-disease-and-microbiome-0" hreflang="en">Infectious Disease and Microbiome Program</a></div> <div class="field__item"><a href="/broad-tags/machine-learning" hreflang="en">Machine learning</a></div> <div class="field__item"><a href="/broad-tags/antibiotic-resistance" hreflang="en">Antibiotic resistance</a></div> <div class="field__item"><a href="/broad-tags/infectious-disease" hreflang="en">Infectious Disease</a></div> <div class="field__item"><a href="/broad-tags/artificial-intelligence" hreflang="en">Artificial intelligence</a></div> <div class="field__item"><a href="/broad-tags/jim-collins" hreflang="en">Jim Collins</a></div> </div> </div> </div> </div> </div> Thu, 30 Nov 2017 17:08:17 +0000 kzusi@broadinstitute.org 154876 at