Wang Y, Jimenez M, Hansen AS, Raiber EA, Schreiber SL, Young DW. Control of olefin geometry in macrocyclic ring-closing metathesis using a removable silyl group. J Am Chem Soc. 2011;133(24):9196-9. doi:10.1021/ja202012s
Luan S, Li W, Rusnak F, Assmann SM, Schreiber SL. Immunosuppressants implicate protein phosphatase regulation of K+ channels in guard cells. Proc Natl Acad Sci U S A. 1993;90(6):2202-6.
Marcaurelle LA, Comer E, Dandapani S, et al. An aldol-based build/couple/pair strategy for the synthesis of medium- and large-sized rings: discovery of macrocyclic histone deacetylase inhibitors. J Am Chem Soc. 2010;132(47):16962-76. doi:10.1021/ja105119r
Tedeschi G, Negri A, Ceciliani F, et al. Properties of the flavoenzyme D-aspartate oxidase from Octopus vulgaris. Biochim Biophys Acta. 1994;1207(2):217-22.
D’Aniello A, Vetere A, Petrucelli L. Further study on the specificity of D-amino acid oxidase and D-aspartate oxidase and time course for complete oxidation of D-amino acids. Comp Biochem Physiol B. 1993;105(3-4):731-4.
Fisher GH, D’Aniello A, Vetere A, Cusano GP, Chavez M, Petrucelli L. Quantification of D-aspartate in normal and Alzheimer brains. Neurosci Lett. 1992;143(1-2):215-8.
Lounkine E, Wawer M, Wassermann AM, Bajorath J. SARANEA: a freely available program to mine structure-activity and structure-selectivity relationship information in compound data sets. J Chem Inf Model. 2010;50(1):68-78. doi:10.1021/ci900416a
Yamada M, Watanabe Y, Gootenberg JS, et al. Crystal Structure of the Minimal Cas9 from Campylobacter jejuni Reveals the Molecular Diversity in the CRISPR-Cas9 Systems. Mol Cell. 2017;65(6):1109-1121.e3. doi:10.1016/j.molcel.2017.02.007
Packer MS, Rees HA, Liu DR. Phage-assisted continuous evolution of proteases with altered substrate specificity. Nat Commun. 2017;8(1):956. doi:10.1038/s41467-017-01055-9
Abudayyeh OO, Gootenberg JS, Essletzbichler P, et al. RNA targeting with CRISPR-Cas13. Nature. 2017;550(7675):280-284. doi:10.1038/nature24049