清脆的
生物
Cas9
基因组编辑
引导RNA
克拉斯
基因组
基因
计算生物学
遗传学
癌症研究
突变
作者
Randall J. Platt,Sidi Chen,Yang Zhou,Michael J. Yim,Lukasz Swiech,H. Kempton,James E. Dahlman,Oren Parnas,Thomas Eisenhaure,Marko Jovanović,D. B. Graham,Siddharth Jhunjhunwala,Matthias Heidenreich,Ramnik J. Xavier,Robert Langer,Daniel G. Anderson,Nir Hacohen,Aviv Regev,Guoping Feng,Phillip A. Sharp,Feng Zhang
出处
期刊:Cell
[Cell Press]
日期:2014-09-25
卷期号:159 (2): 440-455
被引量:1793
标识
DOI:10.1016/j.cell.2014.09.014
摘要
CRISPR-Cas9 is a versatile genome editing technology for studying the functions of genetic elements. To broadly enable the application of Cas9 in vivo, we established a Cre-dependent Cas9 knockin mouse. We demonstrated in vivo as well as ex vivo genome editing using adeno-associated virus (AAV)-, lentivirus-, or particle-mediated delivery of guide RNA in neurons, immune cells, and endothelial cells. Using these mice, we simultaneously modeled the dynamics of KRAS, p53, and LKB1, the top three significantly mutated genes in lung adenocarcinoma. Delivery of a single AAV vector in the lung generated loss-of-function mutations in p53 and Lkb1, as well as homology-directed repair-mediated Kras(G12D) mutations, leading to macroscopic tumors of adenocarcinoma pathology. Together, these results suggest that Cas9 mice empower a wide range of biological and disease modeling applications.
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