Efficient delivery of genome-editing proteins using bioreducible lipid nanoparticles.

Proc Natl Acad Sci U S A
Authors
Keywords
Abstract

A central challenge to the development of protein-based therapeutics is the inefficiency of delivery of protein cargo across the mammalian cell membrane, including escape from endosomes. Here we report that combining bioreducible lipid nanoparticles with negatively supercharged Cre recombinase or anionic Cas9:single-guide (sg)RNA complexes drives the electrostatic assembly of nanoparticles that mediate potent protein delivery and genome editing. These bioreducible lipids efficiently deliver protein cargo into cells, facilitate the escape of protein from endosomes in response to the reductive intracellular environment, and direct protein to its intracellular target sites. The delivery of supercharged Cre protein and Cas9:sgRNA complexed with bioreducible lipids into cultured human cells enables gene recombination and genome editing with efficiencies greater than 70%. In addition, we demonstrate that these lipids are effective for functional protein delivery into mouse brain for gene recombination in vivo. Therefore, the integration of this bioreducible lipid platform with protein engineering has the potential to advance the therapeutic relevance of protein-based genome editing.

Year of Publication
2016
Journal
Proc Natl Acad Sci U S A
Volume
113
Issue
11
Pages
2868-73
Date Published
2016 Mar 15
ISSN
1091-6490
DOI
10.1073/pnas.1520244113
PubMed ID
26929348
PubMed Central ID
PMC4801296
Links
Grant list
R01 GM095501 / GM / NIGMS NIH HHS / United States
Howard Hughes Medical Institute / United States