增强子
中间神经元
生物
神经科学
背景(考古学)
转基因
计算生物学
集合(抽象数据类型)
遗传学
基因
基因表达
计算机科学
抑制性突触后电位
程序设计语言
古生物学
作者
Elisabetta Furlanis,Min Dai,Brenda Leyva Garcia,Josselyn Vergara,Ana Pereira,Kenneth A. Pelkey,Thien Khai Tran,Bram L. Gorissen,Anna Vlachos,Ariel Hairston,Shuhan Huang,Deepanjali Dwivedi,Sarah Du,Sara Wills,Justin McMahon,Anthony T. Lee,Edward F. Chang,Taha Razzaq,A.A. Qazi,Geoffrey A. Vargish
标识
DOI:10.1101/2024.07.17.603924
摘要
SUMMARY In recent years, we and others have identified a number of enhancers that, when incorporated into rAAV vectors, can restrict the transgene expression to particular neuronal populations. Yet, viral tools to access and manipulate fine neuronal subtypes are still limited. Here, we performed systematic analysis of single cell genomic data to identify enhancer candidates for each of the cortical interneuron subtypes. We established a set of enhancer-AAV tools that are highly specific for distinct cortical interneuron populations and striatal cholinergic neurons. These enhancers, when used in the context of different effectors, can target (fluorescent proteins), observe activity (GCaMP) and manipulate (opto- or chemo-genetics) specific neuronal subtypes. We also validated our enhancer-AAV tools across species. Thus, we provide the field with a powerful set of tools to study neural circuits and functions and to develop precise and targeted therapy.
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