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伯格曼胶质细胞和识别分子CHL1组织GABA能轴突并引导浦肯野细胞树突的神经支配。

Bergmann glia and the recognition molecule CHL1 organize GABAergic axons and direct innervation of Purkinje cell dendrites.

作者信息

Ango Fabrice, Wu Caizhi, Van der Want Johannes J, Wu Priscilla, Schachner Melitta, Huang Z Josh

机构信息

Cold Spring Harbor Laboratory, Cold Spring Harbor, New York, United States of America.

出版信息

PLoS Biol. 2008 Apr 29;6(4):e103. doi: 10.1371/journal.pbio.0060103.

Abstract

The geometric and subcellular organization of axon arbors distributes and regulates electrical signaling in neurons and networks, but the underlying mechanisms have remained elusive. In rodent cerebellar cortex, stellate interneurons elaborate characteristic axon arbors that selectively innervate Purkinje cell dendrites and likely regulate dendritic integration. We used GFP BAC transgenic reporter mice to examine the cellular processes and molecular mechanisms underlying the development of stellate cell axons and their innervation pattern. We show that stellate axons are organized and guided towards Purkinje cell dendrites by an intermediate scaffold of Bergmann glial (BG) fibers. The L1 family immunoglobulin protein Close Homologue of L1 (CHL1) is localized to apical BG fibers and stellate cells during the development of stellate axon arbors. In the absence of CHL1, stellate axons deviate from BG fibers and show aberrant branching and orientation. Furthermore, synapse formation between aberrant stellate axons and Purkinje dendrites is reduced and cannot be maintained, leading to progressive atrophy of axon terminals. These results establish BG fibers as a guiding scaffold and CHL1 a molecular signal in the organization of stellate axon arbors and in directing their dendritic innervation.

摘要

轴突分支的几何和亚细胞组织在神经元及神经网络中分布并调节电信号传导,但其潜在机制仍不清楚。在啮齿动物的小脑皮质中,星状中间神经元形成特征性的轴突分支,选择性地支配浦肯野细胞的树突,并可能调节树突整合。我们使用绿色荧光蛋白细菌人工染色体(GFP BAC)转基因报告小鼠来研究星状细胞轴突发育及其支配模式的细胞过程和分子机制。我们发现,星状轴突由伯格曼胶质(BG)纤维的中间支架组织并引导至浦肯野细胞树突。在星状轴突分支发育过程中,L1家族免疫球蛋白蛋白L1紧密同源物(CHL1)定位于顶端BG纤维和星状细胞。在缺乏CHL1的情况下,星状轴突偏离BG纤维,并表现出异常分支和方向。此外,异常星状轴突与浦肯野树突之间的突触形成减少且无法维持,导致轴突终末逐渐萎缩。这些结果确立了BG纤维作为引导支架,以及CHL1作为星状轴突分支组织及其树突支配导向中的分子信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/556c/2689695/22c56070fe44/pbio.0060103.g001.jpg

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