Inducible in vivo genome editing with CRISPR-Cas9

利用 CRISPR-Cas9 进行体内可诱导基因组编辑

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作者:Lukas E Dow # ,Jonathan Fisher # ,Kevin P O'Rourke ,Ashlesha Muley ,Edward R Kastenhuber ,Geulah Livshits ,Darjus F Tschaharganeh ,Nicholas D Socci ,Scott W Lowe

Abstract

CRISPR-Cas9-based genome editing enables the rapid genetic manipulation of any genomic locus without the need for gene targeting by homologous recombination. Here we describe a conditional transgenic approach that allows temporal control of CRISPR-Cas9 activity for inducible genome editing in adult mice. We show that doxycycline-regulated Cas9 induction enables widespread gene disruption in multiple tissues and that limiting the duration of Cas9 expression or using a Cas9(D10A) (Cas9n) variant can regulate the frequency and size of target gene modifications, respectively. Further, we show that this inducible CRISPR (iCRISPR) system can be used effectively to create biallelic mutation in multiple target loci and, thus, provides a flexible and fast platform to study loss-of-function phenotypes in vivo.

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