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Structure-guided chemical modification of guide RNA enables potent non-viral in vivo genome editing.

Authors :
Yin, Hao
Song, Chun-Qing
Suresh, Sneha
Wu, Qiongqiong
Walsh, Stephen
Rhym, Luke Hyunsik
Mintzer, Esther
Bolukbasi, Mehmet Fatih
Zhu, Lihua Julie
Kauffman, Kevin
Mou, Haiwei
Oberholzer, Alicia
Ding, Junmei
Kwan, Suet-Yan
Bogorad, Roman L
Zatsepin, Timofei
Koteliansky, Victor
Wolfe, Scot A
Xue, Wen
Langer, Robert
Source :
Nature Biotechnology. Dec2017, Vol. 35 Issue 12, p1179-1187. 9p. 5 Graphs.
Publication Year :
2017

Abstract

Efficient genome editing with Cas9-sgRNA in vivo has required the use of viral delivery systems, which have limitations for clinical applications. Translational efforts to develop other RNA therapeutics have shown that judicious chemical modification of RNAs can improve therapeutic efficacy by reducing susceptibility to nuclease degradation. Guided by the structure of the Cas9-sgRNA complex, we identify regions of sgRNA that can be modified while maintaining or enhancing genome-editing activity, and we develop an optimal set of chemical modifications for in vivo applications. Using lipid nanoparticle formulations of these enhanced sgRNAs (e-sgRNA) and mRNA encoding Cas9, we show that a single intravenous injection into mice induces >80% editing of Pcsk9 in the liver. Serum Pcsk9 is reduced to undetectable levels, and cholesterol levels are significantly lowered about 35% to 40% in animals. This strategy may enable non-viral, Cas9-based genome editing in the liver in clinical settings. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10870156
Volume :
35
Issue :
12
Database :
Academic Search Index
Journal :
Nature Biotechnology
Publication Type :
Academic Journal
Accession number :
126653679
Full Text :
https://doi.org/10.1038/nbt.4005