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Syntaxin4 蛋白 C 端的性质影响 Munc18c 支持的 SNARE 组装。

The nature of the Syntaxin4 C-terminus affects Munc18c-supported SNARE assembly.

作者信息

Rehman Asma, Hu Shu-Hong, Tnimov Zakir, Whitten Andrew E, King Gordon J, Jarrott Russell J, Norwood Suzanne J, Alexandrov Kirill, Collins Brett M, Christie Michelle P, Martin Jennifer L

机构信息

Division of Chemistry and Structural Biology, Institute for Molecular Bioscience, The University of Queensland, St Lucia, Brisbane, QLD, Australia.

Division of Cell Biology and Molecular Medicine, Institute for Molecular Bioscience, The University of Queensland, St Lucia, Brisbane, QLD, Australia.

出版信息

PLoS One. 2017 Aug 25;12(8):e0183366. doi: 10.1371/journal.pone.0183366. eCollection 2017.

Abstract

Vesicular transport of cellular cargo requires targeted membrane fusion and formation of a SNARE protein complex that draws the two apposing fusing membranes together. Insulin-regulated delivery and fusion of glucose transporter-4 storage vesicles at the cell surface is dependent on two key proteins: the SNARE integral membrane protein Syntaxin4 (Sx4) and the soluble regulatory protein Munc18c. Many reported in vitro studies of Munc18c:Sx4 interactions and of SNARE complex formation have used soluble Sx4 constructs lacking the native transmembrane domain. As a consequence, the importance of the Sx4 C-terminal anchor remains poorly understood. Here we show that soluble C-terminally truncated Sx4 dissociates more rapidly from Munc18c than Sx4 where the C-terminal transmembrane domain is replaced with a T4-lysozyme fusion. We also show that Munc18c appears to inhibit SNARE complex formation when soluble C-terminally truncated Sx4 is used but does not inhibit SNARE complex formation when Sx4 is C-terminally anchored (by a C-terminal His-tag bound to resin, by a C-terminal T4L fusion or by the native C-terminal transmembrane domain in detergent micelles). We conclude that the C-terminus of Sx4 is critical for its interaction with Munc18c, and that the reported inhibitory role of Munc18c may be an artifact of experimental design. These results support the notion that a primary role of Munc18c is to support SNARE complex formation and membrane fusion.

摘要

细胞内物质的囊泡运输需要靶向膜融合并形成SNARE蛋白复合物,该复合物将两个相对的融合膜拉到一起。胰岛素调节的葡萄糖转运蛋白4储存囊泡在细胞表面的递送和融合依赖于两种关键蛋白:SNARE整合膜蛋白Syntaxin4(Sx4)和可溶性调节蛋白Munc18c。许多已报道的关于Munc18c:Sx4相互作用和SNARE复合物形成的体外研究使用了缺乏天然跨膜结构域的可溶性Sx4构建体。因此,Sx4 C末端锚定的重要性仍然知之甚少。在这里,我们表明,与C末端跨膜结构域被T4溶菌酶融合取代的Sx4相比,可溶性C末端截短的Sx4与Munc18c的解离速度更快。我们还表明,当使用可溶性C末端截短的Sx4时,Munc18c似乎会抑制SNARE复合物的形成,但当Sx4 C末端锚定(通过与树脂结合的C末端His标签、通过C末端T4L融合或通过去污剂胶束中的天然C末端跨膜结构域)时,Munc18c不会抑制SNARE复合物的形成。我们得出结论,Sx4的C末端对于其与Munc18c的相互作用至关重要,并且报道的Munc18c的抑制作用可能是实验设计的假象。这些结果支持了Munc18c的主要作用是支持SNARE复合物形成和膜融合的观点。

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