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Netrin-1 调节成年腹侧被盖区突触谷氨酸信号的平衡。

Netrin-1 regulates the balance of synaptic glutamate signaling in the adult ventral tegmental area.

机构信息

Department of Psychiatry and Behavioral Sciences, University of Washington, Seattle, United States.

Molecular and Cellular Biology Program, University of Washington, Seattle, United States.

出版信息

Elife. 2023 Mar 17;12:e83760. doi: 10.7554/eLife.83760.

Abstract

The axonal guidance cue netrin-1 serves a critical role in neural circuit development by promoting growth cone motility, axonal branching, and synaptogenesis. Within the adult mouse brain, expression of the gene encoding () is highly enriched in the ventral midbrain where it is expressed in both GABAergic and dopaminergic neurons, but its function in these cell types in the adult system remains largely unknown. To address this, we performed viral-mediated, cell-type specific CRISPR-Cas9 mutagenesis of in the ventral tegmental area (VTA) of adult mice. loss-of-function in either cell type resulted in a significant reduction in excitatory postsynaptic connectivity. In dopamine neurons, the reduced excitatory tone had a minimal phenotypic behavioral outcome; however, reduced glutamatergic tone on VTA GABA neurons induced behaviors associated with a hyperdopaminergic phenotype. Simultaneous loss of function in both cell types largely rescued the phenotype observed in the GABA-only mutagenesis. These findings demonstrate an important role for Ntn1 in maintaining excitatory connectivity in the adult midbrain and that a balance in this connectivity within two of the major cell types of the VTA is critical for the proper functioning of the mesolimbic system.

摘要

轴突导向 cue 神经纤毛蛋白 1 通过促进生长锥运动、轴突分支和突触形成,在神经回路发育中起着关键作用。在成年小鼠大脑中,编码 () 的基因表达高度富集于腹侧中脑,在那里它在 GABA 能神经元和多巴胺能神经元中均有表达,但它在成年系统中这些细胞类型中的功能仍知之甚少。为了解决这个问题,我们在成年小鼠的腹侧被盖区 (VTA) 中进行了病毒介导的、细胞类型特异性的 CRISPR-Cas9 基因突变。在这两种细胞类型中丧失功能都会导致兴奋性突触连接显著减少。在多巴胺神经元中,减少的兴奋性张力几乎没有表型行为结果;然而,VTA GABA 神经元上谷氨酸能张力的减少诱导与高多巴胺能表型相关的行为。这两种细胞类型同时丧失功能很大程度上挽救了仅在 GABA 突变体中观察到的表型。这些发现表明 Ntn1 在维持成年中脑中的兴奋性连接中起着重要作用,并且 VTA 中的两个主要细胞类型之间的这种连接的平衡对于中脑边缘系统的正常功能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a851/10023152/3a0979cf4f58/elife-83760-fig1.jpg

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