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Construction of a rAAV-SaCas9 system expressing eGFP and its application to improve muscle mass

Shaoting Weng; Yitian Zhao; Changhong Yu; Xiaofan Wang; Xuehan Xiao; Liqiang Han; Kunpeng Zhang; Jiang Wang; Guoyu Yang
Biotechnology Letters · Vol. 43, Issue 11 · pp. 2111-2129 · 2021

Abstract

An ideal rAAV gene editing system not only effectively edits genes at specific site, but also prevents the spread of the virus from occurring off-target or carcinogenic risks. This is important for gene editing research at specific site in vivo. We report a single rAAV containing SaCas9 and guide RNAs under the control of subtle EF1a and tRNA promoters. The capacity of rAAV was compressed, and the editing efficiency was similar to that of the classical Cas9 system in vitro and in vivo. And we inserted the sequence of the green fluorescent protein eGFP into rAAV. The number of cells infected with the rAAV and the region in which the rAAV spreads were known by the fluorescent expression of eGFP in cells. In addition, we demonstrated that myostatin gene in the thigh muscles of C57BL/10 mice was knocked out by the rAAV9-SaCas9 system to make muscle mass increased obviously. The protein eGFP into rAAV has significant implications for our indirect analysis of the editing efficiency of SaCas9 in the genome of the target tissue and reduces the harm caused by off-target editing and prevents other tissue mutations. The rAAV system has substantial potential in improving muscle mass and preventing muscle atrophy.

Bibliographic Information

JournalBiotechnology Letters
PublisherSpringer
Publication Date2021-11-01
Publication Year2021
Volume43
Issue11
Pages2111-2129
Document TypeJournal Article
Print ISSN0141-5492
eISSN1573-6776
DOI10.1007/s10529-021-03183-1

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NARA Access Coverage1979-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10529
Publisher PageOpen Publisher Page
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