Gore Bryan B, Soden Marta E, Zweifel Larry S
Department of Pharmacology and Department of Psychiatry and Behavioral Sciences, University of Washington, Seattle, WA.
Curr Protoc Neurosci. 2013;65(435):4.35.1-20. doi: 10.1002/0471142301.ns0435s65.
The mammalian brain contains tremendous structural and genetic complexity that is vital for its function. The elucidation of gene expression profiles in the brain, coupled with the development of large-scale connectivity maps and emerging viral vector-based approaches for target-selective gene manipulation, now allow for detailed dissection of gene-circuit interfaces. This protocol details how to perform combinatorial viral injections to manipulate gene expression in subsets of neurons interconnecting two brain regions. This method utilizes stereotaxic injection of a retrograde transducing CAV2-Cre virus into one brain region, combined with injection of a locally transducing Cre-dependent AAV virus into another brain region. This technique is widely applicable to the genetic dissection of neural circuitry, as it enables selective expression of candidate genes, dominant-negatives, fluorescent reporters, or genetic tools within heterogeneous populations of neurons based upon their projection targets.
哺乳动物的大脑具有巨大的结构和遗传复杂性,这对其功能至关重要。对大脑中基因表达谱的阐明,再加上大规模连接图谱的发展以及基于病毒载体的新兴靶标选择性基因操纵方法,现在使得对基因-回路界面进行详细剖析成为可能。本方案详细介绍了如何进行组合病毒注射,以操纵连接两个脑区的神经元亚群中的基因表达。该方法利用立体定位将逆行转导的CAV2-Cre病毒注射到一个脑区,同时将局部转导的Cre依赖性AAV病毒注射到另一个脑区。这项技术广泛适用于神经回路的遗传剖析,因为它能够根据神经元的投射靶点,在异质神经元群体中选择性表达候选基因、显性负性基因、荧光报告基因或遗传工具。