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大鼠unc-13同源物Munc13-1与 syntaxin N端的直接相互作用。

Direct interaction of the rat unc-13 homologue Munc13-1 with the N terminus of syntaxin.

作者信息

Betz A, Okamoto M, Benseler F, Brose N

机构信息

Max-Planck-Institut für experimentelle Medizin, Abteilung Molekulare Neurobiologie, Hermann-Rein-Strasse 3, D-37075 Göttingen, Federal Republic of Germany.

出版信息

J Biol Chem. 1997 Jan 24;272(4):2520-6. doi: 10.1074/jbc.272.4.2520.

Abstract

unc-13 mutants in Caenorhabditis elegans are characterized by a severe deficit in neurotransmitter release. Their phenotype is similar to that of the C. elegans unc-18 mutation, which is thought to affect synaptic vesicle docking to the active zone. This suggests a crucial role for the unc-13 gene product in the mediation or regulation of synaptic vesicle exocytosis. Munc13-1 is one of three closely related rat homologues of unc-13. Based on the high degree of similarity between unc-13 and Munc13 proteins, it is thought that their essential function has been conserved from C. elegans to mammals. Munc13-1 is a brain-specific peripheral membrane protein with multiple regulatory domains that may mediate diacylglycerol, phospholipid, and calcium binding. In the present study, we demonstrate by three independent methods that the C terminus of Munc13-1 interacts directly with a putative coiled coil domain in the N-terminal part of syntaxin. Syntaxin is a component of the exocytotic synaptic core complex, a heterotrimeric protein complex with an essential role in transmitter release. Through this interaction, Munc13-1 binds to a subpopulation of the exocytotic core complex containing synaptobrevin, SNAP25 (synaptosomal-associated protein of 25 kDa), and syntaxin, but to no other tested syntaxin-interacting or core complex-interacting protein. The site of interaction in syntaxin is similar to the binding site for the unc-18 homologue Munc18, but different from that of all other known syntaxin interactors. These data indicate that unc-13-related proteins may indeed be involved in the mediation or regulation of synaptic vesicle exocytosis by modulating or regulating core complex formation. The similarity between the unc-13 and unc-18 phenotypes is paralleled by the coincidence of the binding sites for Munc13-1 and Munc18 in syntaxin. It is possible that the phenotype of unc-13 and unc-18 mutations is caused by the inability of the respective mutated gene products to bind to syntaxin.

摘要

秀丽隐杆线虫中的unc-13突变体的特征是神经递质释放严重不足。它们的表型与秀丽隐杆线虫unc-18突变的表型相似,后者被认为会影响突触小泡与活性区的对接。这表明unc-13基因产物在介导或调节突触小泡胞吐作用中起关键作用。Munc13-1是unc-13的三个密切相关的大鼠同源物之一。基于unc-13和Munc13蛋白之间的高度相似性,人们认为它们的基本功能从秀丽隐杆线虫到哺乳动物都得到了保留。Munc13-1是一种脑特异性外周膜蛋白,具有多个调节结构域,可能介导二酰甘油、磷脂和钙的结合。在本研究中,我们通过三种独立方法证明,Munc13-1的C末端与 syntaxin N末端部分的一个假定的卷曲螺旋结构域直接相互作用。Syntaxin是胞吐性突触核心复合体的一个组成部分,是一种异源三聚体蛋白复合体,在递质释放中起重要作用。通过这种相互作用,Munc13-1与包含突触小泡蛋白、SNAP25(25 kDa突触体相关蛋白)和syntaxin的胞吐核心复合体亚群结合,但不与其他测试的与syntaxin相互作用或与核心复合体相互作用的蛋白结合。Syntaxin中的相互作用位点与unc-18同源物Munc18的结合位点相似,但与所有其他已知的syntaxin相互作用蛋白的位点不同。这些数据表明,unc-13相关蛋白可能确实通过调节核心复合体的形成参与突触小泡胞吐作用的介导或调节。Munc13-1和Munc18在syntaxin中的结合位点的巧合与unc-13和unc-18表型之间的相似性平行。unc-13和unc-18突变的表型可能是由各自突变的基因产物无法与syntaxin结合导致的。

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