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Tomosyn与Syntaxin和SNAP25的差异相互作用取决于WD40 β-螺旋桨核心中的结构域,并决定其抑制活性。

Differential interaction of tomosyn with syntaxin and SNAP25 depends on domains in the WD40 β-propeller core and determines its inhibitory activity.

作者信息

Bielopolski Noa, Lam Alice D, Bar-On Dana, Sauer Markus, Stuenkel Edward L, Ashery Uri

机构信息

From the Department of Neurobiology, Life Sciences Faculty, and.

the Department of Molecular and Integrative Physiology, University of Michigan, Ann Arbor, Michigan 48109, and.

出版信息

J Biol Chem. 2014 Jun 13;289(24):17087-99. doi: 10.1074/jbc.M113.515296. Epub 2014 Apr 29.

Abstract

Neuronal exocytosis depends on efficient formation of soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) complexes and is regulated by tomosyn, a SNARE-binding protein. To gain new information about tomosyn's activity, we characterized its mobility and organization on the plasma membrane (PM) in relation to other SNARE proteins and inhibition of exocytosis. By using direct stochastic optical reconstruction microscopy (dSTORM), we found tomosyn to be organized in small clusters adjacent to syntaxin clusters. In addition, we show that tomosyn is present in both syntaxin-tomosyn complexes and syntaxin-SNAP25-tomosyn complexes. Tomosyn mutants that lack residues 537-578 or 897-917 from its β-propeller core diffused faster on the PM and exhibited reduced binding to SNAP25, suggesting that these mutants shift the equilibrium between tomosyn-syntaxin-SNAP25 complexes on the PM to tomosyn-syntaxin complexes. As these deletion mutants impose less inhibition on exocytosis, we suggest that tomosyn inhibition is mediated via tomosyn-syntaxin-SNAP25 complexes and not tomosyn-syntaxin complexes. These findings characterize, for the first time, tomosyn's dynamics at the PM and its relation to its inhibition of exocytosis.

摘要

神经元胞吐作用依赖于可溶性N - 乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)复合物的高效形成,并受SNARE结合蛋白tomosyn的调控。为了获取有关tomosyn活性的新信息,我们研究了其在质膜(PM)上的流动性和组织情况,以及与其他SNARE蛋白的关系和对胞吐作用的抑制。通过使用直接随机光学重建显微镜(dSTORM),我们发现tomosyn以小簇的形式组织在与 syntaxin簇相邻的位置。此外,我们表明tomosyn存在于syntaxin - tomosyn复合物和syntaxin - SNAP25 - tomosyn复合物中。其β - 螺旋桨核心缺少537 - 578或897 - 917残基的tomosyn突变体在质膜上扩散得更快,并且与SNAP25的结合减少,这表明这些突变体将质膜上tomosyn - syntaxin - SNAP25复合物与tomosyn - syntaxin复合物之间的平衡发生了转移。由于这些缺失突变体对胞吐作用的抑制作用较小,我们认为tomosyn的抑制作用是通过tomosyn - syntaxin - SNAP25复合物介导的,而不是tomosyn - syntaxin复合物。这些发现首次描述了tomosyn在质膜上的动态变化及其与胞吐作用抑制的关系。

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