突触囊泡循环和内溶酶体系统:形式和功能的重新评价

IF 2.8 4区 医学 Q2 NEUROSCIENCES
D. Ivanova, M. Cousin
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引用次数: 10

摘要

内溶酶体系统存在于所有类型的细胞中。在这些细胞中,它起着一系列重要的作用,如运输和分类膜货物,细胞内信号传导,代谢和降解的控制。中枢神经元中有一个特殊的隔室,称为突触前,通过含有神经递质的突触囊泡(SVs)的融合介导神经元间的通信。SVs的局部循环及其组织成功能池被广泛认为是一种离散的机制,仅在特定点与内溶酶体系统相交。然而,越来越多的证据表明,内溶酶体功能所必需的分子在SV生命周期中也起着关键作用,这表明它们形成了一个连续体,而不是孤立的过程。在这篇综述中,我们总结了SV循环中关键内溶酶体分子的证据,并提出了突触前膜运输的替代模型。这包括内溶酶体中间体代表特定功能的SV池的假设,向SV的货物分类是通过内溶酶体系统介导的,对这一过程的操纵可以导致神经递质释放的可塑性变化和通过神经变性引起的病理生理变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synaptic Vesicle Recycling and the Endolysosomal System: A Reappraisal of Form and Function
The endolysosomal system is present in all cell types. Within these cells, it performs a series of essential roles, such as trafficking and sorting of membrane cargo, intracellular signaling, control of metabolism and degradation. A specific compartment within central neurons, called the presynapse, mediates inter-neuronal communication via the fusion of neurotransmitter-containing synaptic vesicles (SVs). The localized recycling of SVs and their organization into functional pools is widely assumed to be a discrete mechanism, that only intersects with the endolysosomal system at specific points. However, evidence is emerging that molecules essential for endolysosomal function also have key roles within the SV life cycle, suggesting that they form a continuum rather than being isolated processes. In this review, we summarize the evidence for key endolysosomal molecules in SV recycling and propose an alternative model for membrane trafficking at the presynapse. This includes the hypotheses that endolysosomal intermediates represent specific functional SV pools, that sorting of cargo to SVs is mediated via the endolysosomal system and that manipulation of this process can result in both plastic changes to neurotransmitter release and pathophysiology via neurodegeneration.
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来源期刊
CiteScore
7.10
自引率
2.70%
发文量
74
审稿时长
14 weeks
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