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Munc18-1 作为神经分泌的关键调节因子。

Munc18-1 as a key regulator of neurosecretion.

机构信息

Division of Fundamental Neurobiology, University Health Network, Toronto, Ontario, Canada.

出版信息

J Neurochem. 2010 Oct;115(1):1-10. doi: 10.1111/j.1471-4159.2010.06900.x.

Abstract

Munc18-1 plays essential roles in neurosecretion by interacting with syntaxin-1 and controlling the formation of the soluble N-ethylmaleimide-sensitive factor attachment protein receptors (SNARE) complex. At least three important functions of Munc18-1 have been proposed: (i) molecular chaperone of syntaxin-1 for appropriate localization and expression of syntaxin-1, (ii) priming/stimulation of the SNARE-mediated membrane fusion, and (iii) docking of large dense-core vesicles to the plasma membrane. Similarly, at least two different binding modes have been proposed for the interaction between Munc18-1 and syntaxin-1: (i) binary binding to a 'closed' conformation of syntaxin-1, and (ii) binding to the N-terminal peptide of syntaxin-1, which is thought to enable an interaction with the quaternary SNARE complex and/or further stabilize the binary interaction between Munc18-1 and closed syntaxin-1. Recent structural analyses have identified critical Munc18-1 residues implicated in these different modes of binding. These have recently been tested functionally in rescue experiments using Munc18-1 null neurons, chromaffin cells and Munc18-1/-2 knockdown PC12 cells, allowing remarkable progress to be made in the structural/functional understanding of Munc18-1. In this review, we summarize these recent advances and attempt to propose an updated model of the pleiotropic functions of Munc18-1 in neuroexocytosis.

摘要

Munc18-1 通过与突触融合蛋白 1(syntaxin-1)相互作用并控制可溶性 N-乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)复合物的形成,在神经分泌中发挥重要作用。已经提出了 Munc18-1 的至少三个重要功能:(i)作为突触融合蛋白 1 的分子伴侣,促进突触融合蛋白 1 的适当定位和表达,(ii)SNARE 介导的膜融合的引发/刺激,和(iii)大致密核心囊泡与质膜的对接。同样,已经提出了 Munc18-1 与突触融合蛋白 1 之间相互作用的至少两种不同的结合模式:(i)与突触融合蛋白 1 的“闭合”构象的二元结合,和(ii)与突触融合蛋白 1 的 N 端肽的结合,这被认为能够与四元 SNARE 复合物相互作用和/或进一步稳定 Munc18-1 与闭合突触融合蛋白 1 的二元相互作用。最近的结构分析确定了涉及这些不同结合模式的关键 Munc18-1 残基。这些残基最近在使用 Munc18-1 缺失神经元、嗜铬细胞和 Munc18-1/-2 敲低 PC12 细胞的挽救实验中进行了功能测试,使得在 Munc18-1 的结构/功能理解方面取得了显著进展。在这篇综述中,我们总结了这些最新进展,并试图提出一个更新的 Munc18-1 在神经递质释放中的多功能模型。

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