加巴能
重组酶
神经科学
生物
电池类型
Cre重组酶
祖细胞
胚胎干细胞
光遗传学
层流组织
清脆的
命运图
细胞命运测定
祖细胞
转录因子
细胞
抑制性突触后电位
细胞生物学
基因
遗传学
干细胞
重组
转基因小鼠
转基因
作者
Miao He,Jason Tucciarone,SooHyun Lee,Maximiliano José Nigro,Yongsoo Kim,Jesse Levine,Sean M. Kelly,Illya Krugikov,Priscilla Wu,Yang Chen,Ling Gong,Yongjie Hou,Pavel Osten,Bernardo Rudy,Zirui Huang
出处
期刊:Neuron
[Elsevier]
日期:2016-09-01
卷期号:91 (6): 1228-1243
被引量:262
标识
DOI:10.1016/j.neuron.2016.08.021
摘要
Systematic genetic access to GABAergic cell types will facilitate studying the function and development of inhibitory circuitry. However, single gene-driven recombinase lines mark relatively broad and heterogeneous cell populations. Although intersectional approaches improve precision, it remains unclear whether they can capture cell types defined by multiple features. Here we demonstrate that combinatorial genetic and viral approaches target restricted GABAergic subpopulations and cell types characterized by distinct laminar location, morphology, axonal projection, and electrophysiological properties. Intersectional embryonic transcription factor drivers allow finer fate mapping of progenitor pools that give rise to distinct GABAergic populations, including laminar cohorts. Conversion of progenitor fate restriction signals to constitutive recombinase expression enables viral targeting of cell types based on their lineage and birth time. Properly designed intersection, subtraction, conversion, and multi-color reporters enhance the precision and versatility of drivers and viral vectors. These strategies and tools will facilitate studying GABAergic neurons throughout the mouse brain.Video AbstracteyJraWQiOiI4ZjUxYWNhY2IzYjhiNjNlNzFlYmIzYWFmYTU5NmZmYyIsImFsZyI6IlJTMjU2In0.eyJzdWIiOiJkZjI4OWU2NDM0MTgyNTdjM2FlNWI2NDg0Yjc4MWIzZiIsImtpZCI6IjhmNTFhY2FjYjNiOGI2M2U3MWViYjNhYWZhNTk2ZmZjIiwiZXhwIjoxNjc4NjkzMTkxfQ.YHWf2mcmgRyTTnI_1PNmAX3KhrSAPQ2YDevRDt-dBztXAZfNNZFOY044IiBB1JM7HIEIiNppGUbE49aQkK5EGxHhhCh0EORNRPycDdNOvSWMhszjv7KSCynwDqeT4zAGlzqYHVZiqfmqUoJFDZfHgXQHA5sRwUjW5OybCRHaDltgO3egsU3_OSwD_z5cilkrQC9hBwvUO2tH0TlR5OWC5CDqiIzuxvDeVWSqjx8YelmWIkdXfakrkIsk6vEU8rF9uNwcvK50dYthEqyhm59pp0NNNdnrYEffEK4tC036ITPD0XfxGcneaO9uKvlit2jKXFCXtRaupoafVjaQbWS6Ng(mp4, (50.72 MB) Download video
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