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Neural circuit analysis using a novel intersectional split intein-mediated split-Cre recombinase system

机译:使用新型交叉裂缝intein介导的分裂CRE重组酶系统的神经电路分析

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摘要

The defining features of a neuron are its functional and anatomical connections with thousands of other neurons in the brain. Together, these neurons form functional networks that direct animal behavior. Current approaches that allow the interrogation of specific populations of neurons and neural circuits rely heavily on targeting their gene expression profiles or connectivity. However, these approaches are often unable to delineate specific neuronal populations. Here, we developed a novel intersectional split intein-mediated split-Cre recombinase system that can selectively label specific types of neurons based on their gene expression profiles and structural connectivity. We developed this system by splitting Cre recombinase into two fragments with evolved split inteins and subsequently expressed one fragment under the influence of a cell type-specific promoter in a transgenic animal, and delivered the other fragment via retrograde viral gene transfer. This approach results in the reconstitution of Cre recombinase in only specific population of neurons projecting from a specific brain region or in those of a specific neuronal type. Taken together, our split intein-based split-Cre system will be useful for sophisticated characterization of mammalian brain circuits.
机译:神经元的定义特征是其具有大脑中数千个其他神经元的功能和解剖联系。这些神经元在一起形成了直接动物行为的功能网络。允许询问神经元特异性群体和神经电路询问的目前的方法依赖于靶向其基因表达谱或连通性。然而,这些方法往往无法描绘特异性神经元群体。在这里,我们开发了一种新型交叉分裂intein介导的分裂 - CRE重组酶系统,可以基于其基因表达谱和结构连接选择性地标记特异性神经元。我们通过将CRE重组酶分成两种碎片,随后在转基因动物中的细胞类型特异性启动子的影响下表达一个片段,通过逆行病毒基因转移递送另一个片段,通过将CRE重组酶分成两种片段。这种方法导致仅在特定脑区域或特定神经元类型中突出的特异性神经元群体重新构建CRE重组酶。在一起,我们的拆分Intein的分裂CRE系统对于哺乳动物脑电路的复杂表征是有用的。

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