生物
转基因
清脆的
基因
体内
转基因小鼠
基因组编辑
表型
激活剂(遗传学)
细胞生物学
基因表达调控
神经科学
基因组
计算生物学
遗传学
作者
Haibo Zhou,Junlai Liu,Changyang Zhou,Ni Gao,Zhiping Rao,He Li,Xinde Hu,Changlin Li,Xuan Yao,Xiaowen Shen,Yidi Sun,Wei Yu,Fei Liu,Wenqin Ying,Junming Zhang,Cheng Tang,Xu Zhang,Hua-Tai Xu,Linyu Shi,Leping Cheng,Pengyu Huang,Hui Yang
标识
DOI:10.1038/s41593-017-0060-6
摘要
Despite rapid progresses in the genome-editing field, in vivo simultaneous overexpression of multiple genes remains challenging. We generated a transgenic mouse using an improved dCas9 system that enables simultaneous and precise in vivo transcriptional activation of multiple genes and long noncoding RNAs in the nervous system. As proof of concept, we were able to use targeted activation of endogenous neurogenic genes in these transgenic mice to directly and efficiently convert astrocytes into functional neurons in vivo. This system provides a flexible and rapid screening platform for studying complex gene networks and gain-of-function phenotypes in the mammalian brain.
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