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An Intersectional Approach to Target Neural Circuits With Cell- and Projection-Type Specificity: Validation in the Mesolimbic Dopamine System

机译:一种具有细胞和投射类型特异性的目标神经回路的交叉方法:中脑边缘多巴胺系统的验证

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摘要

Development of tools to manipulate activity of specific neurons is important for dissecting the function of neural circuits. Viral vectors and conditional transgenic animal lines that target recombinases to specific cells facilitate the successful manipulation and recording of specific subsets of neurons. So far, it has been possible to target neuronal subtypes within a certain brain region based on transcriptional control regions from a gene selectively expressed in those cells or based upon its projections. Nevertheless, there are only a few tools available that combine this and target a neuronal subtype within a projection. We tested a viral vector system, consisting of a canine adenovirus type 2 expressing a Cre-dependent Flp recombinase (CavFlexFlp) and an adeno-associated viral (AAV) vector expressing a Flp-dependent cDNA, which targets neurons in a subtype- and projection-specific manner. As proof of principle we targeted expression of a Designer Receptor Exclusively Activated by Designer Drugs (DREADD) to the dopamine neurons of the mesolimbic projection, which allows the transient activation of neurons by the ligand Clozapine-N-Oxide (CNO). We validated that the system specifically targets dopamine neurons and that chemogenetic activation of these neurons induces an increase in locomotor activity. We thus validated a valuable tool that allows in vivo neuronal activation in a projection- and subtype-specific manner.
机译:开发用于操纵特定神经元活动的工具对于剖析神经回路的功能很重要。将重组酶靶向特定细胞的病毒载体和条件转基因动物系,有助于成功操纵和记录神经元的特定亚群。到目前为止,已经有可能基于来自在那些细胞中选择性表达的基因的转录控制区域或基于其预测,在某个大脑区域内靶向神经元亚型。但是,只有少数工具可以将其组合并以投影中的神经元亚型为靶标。我们测试了一种病毒载体系统,该系统由表达Cre依赖性Flp重组酶(CavFlexFlp)的犬2型腺病毒和表达Flp依赖性cDNA的腺相关病毒(AAV)载体组成,该病毒靶向亚型和投影中的神经元特定的方式。作为原理上的证明,我们针对了被Designer Drugs(DREADD)独家激活的Designer Receptor的表达针对中脑边缘投射的多巴胺神经元,这使得配体Clozapine-N-Oxide(CNO)能够瞬时激活神经元。我们验证了该系统专门针对多巴胺神经元,并且这些神经元的化学发生激活会引起运动活动的增加。因此,我们验证了一种有价值的工具,该工具允许以投影和亚型特定的方式进行体内神经元激活。

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