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神经细胞黏附分子 2(NCAM2)诱导的 c-Src 依赖性胞膜下钙离子波沿树突传播抑制突触成熟。

Neural Cell Adhesion Molecule 2 (NCAM2)-Induced c-Src-Dependent Propagation of Submembrane Ca2+ Spikes Along Dendrites Inhibits Synapse Maturation.

机构信息

School of Biotechnology and Biomolecular Sciences, The University of New South Wales, Sydney, New South Wales, Australia.

出版信息

Cereb Cortex. 2019 Apr 1;29(4):1439-1459. doi: 10.1093/cercor/bhy041.

Abstract

The neural cell adhesion molecule 2 (NCAM2) is encoded by a gene on chromosome 21 in humans. NCAM2 accumulates in synapses, but its role in regulation of synapse formation remains poorly understood. We demonstrate that an increase in NCAM2 levels results in increased instability of dendritic protrusions and reduced conversion of protrusions to dendritic spines in mouse cortical neurons. NCAM2 overexpression induces an increase in the frequency of submembrane Ca2+ spikes localized in individual dendritic protrusions and promotes propagation of submembrane Ca2+ spikes over segments of dendrites or the whole dendritic tree. NCAM2-dependent submembrane Ca2+ spikes are L-type voltage-gated Ca2+ channel-dependent, and their propagation but not initiation depends on the c-Src protein tyrosine kinase. Inhibition of initiation or propagation of NCAM2-dependent submembrane Ca2+ spikes reduces the NCAM2-dependent instability of dendritic protrusions. Synaptic boutons formed on dendrites of neurons with elevated NCAM2 expression are enriched in the protein marker of immature synapses GAP43, and the number of boutons with mature activity-dependent synaptic vesicle recycling is reduced. Our results indicate that synapse maturation is inhibited in NCAM2-overexpressing neurons and suggest that changes in NCAM2 levels and altered submembrane Ca2+ dynamics can cause defects in synapse maturation in Down syndrome and other brain disorders associated with abnormal NCAM2 expression.

摘要

神经细胞黏附分子 2(NCAM2)是人类 21 号染色体上基因编码的。NCAM2 在突触中积累,但它在调节突触形成中的作用仍知之甚少。我们证明,NCAM2 水平的增加会导致树突突变更不稳定,并减少突起向树突棘的转化。NCAM2 的过表达会导致单个树突突中局部亚膜 Ca2+峰的频率增加,并促进亚膜 Ca2+峰在树突段或整个树突上传播。NCAM2 依赖性亚膜 Ca2+峰是 L 型电压门控 Ca2+通道依赖性的,其传播而不是起始依赖于 c-Src 蛋白酪氨酸激酶。抑制 NCAM2 依赖性亚膜 Ca2+峰的起始或传播会降低树突突的 NCAM2 依赖性不稳定性。在 NCAM2 表达升高的神经元的树突上形成的突触末梢富含不成熟突触的蛋白标志物 GAP43,而具有成熟活性依赖性突触小泡回收的末梢数量减少。我们的结果表明,在 NCAM2 过表达的神经元中抑制了突触成熟,并表明 NCAM2 水平的变化和改变的亚膜 Ca2+动力学可能导致唐氏综合征和其他与异常 NCAM2 表达相关的大脑障碍中的突触成熟缺陷。

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