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Structure of the Munc18c/Syntaxin4 N-peptide complex defines universal features of the N-peptide binding mode of Sec1/Munc18 proteins

机译:Munc18c / Syntaxin4 N肽复合物的结构定义了Sec1 / Munc18蛋白的N肽结合模式的通用特征

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摘要

Sec1/Munc18 proteins (SM proteins) bind to soluble NSF attachment protein receptors (SNAREs) and play an essential role in membrane fusion. Divergent modes of regulation have been proposed for different SM proteins indicating that they can either promote or inhibit SNARE assembly. This is in part because of discrete modes of binding that have been described for various SM/SNARE complexes. One mode suggests that SM proteins bind only to Syntaxins (Stx) preventing SNARE assembly, whereas in another they facilitate SNARE assembly and bind to SNARE complexes. The mammalian cell surface SM protein Munc18c binds to an N-peptide in Stx4, and this is compatible with its interaction with SNARE complexes. Here we describe the crystal structure of Munc18c in complex with the Stx4 N-peptide. This structure shows remarkable similarity with a yeast complex indicating that the mode of binding, which can accommodate SNARE complexes, is highly conserved throughout evolution. Modeling reveals the presence of the N-peptide binding mode in most but not all yeast and mammalian SM/Stx pairs, suggesting that it has coevolved to fulfill a specific regulatory function. It is unlikely that the N-peptide interaction alone accounts for the specificity in SM/SNARE binding, implicating other contact surfaces in this function. Together with other data, our results support a sequential two-state model for SM/SNARE binding involving an initial interaction via the Stx N-peptide, which somehow facilitates a second, more comprehensive interaction comprising other contact surfaces in both proteins.
机译:Sec1 / Munc18蛋白(SM蛋白)与可溶性NSF附着蛋白受体(SNARE)结合,并在膜融合中起重要作用。已经针对不同的SM蛋白提出了不同的调节模式,表明它们可以促进或抑制SNARE装配。部分原因是已针对各种SM / SNARE复合体描述了离散的绑定模式。一种模式表明SM蛋白仅与防止SNARE装配的Syntaxins(Stx)结合,而在另一种模式下,它们促进SNARE装配并与SNARE复合物结合。哺乳动物细胞表面SM蛋白Munc18c与Stx4中的N肽结合,这与其与SNARE复合物的相互作用兼容。在这里,我们描述了与Stx4 N肽复合的Munc18c的晶体结构。该结构显示出与酵母复合物的显着相似性,表明可以适应SNARE复合物的结合模式在整个进化过程中高度保守。建模揭示了大多数(但不是全部)酵母和哺乳动物SM / Stx对中N肽结合模式的存在,表明它已经进化为实现特定的调节功能。仅靠N肽相互作用不可能解释SM / SNARE结合的特异性,从而使其他接触表面参与该功能。连同其他数据,我们的结果支持SM / SNARE结合的连续两态模型,该模型涉及通过Stx N肽的初始相互作用,从而以某种方式促进了第二种更全面的相互作用,包括两种蛋白质中的其他接触表面。

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