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Dual roles of Munc18-1 rely on distinct binding modes of the central cavity with Stx1A and SNARE complex

机译:Munc18-1的双重作用依赖于中央腔与Stx1A和SNARE复合体的独特结合模式

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摘要

Sec1/Munc18 proteins play a fundamental role in multiple steps of intracellular membrane trafficking. Dual functions have been attributed to Munc18-1: it can act as a chaperone Dual roles when it interacts with monomeric syntaxin 1A, and it can activate soluble N-ethylmaleimide-sensitive factor attachment protein receptors (SNAREs) for membrane fusion when it binds to SNARE complexes. Although both modes of binding involve the central cavity of Munc18-1, their precise molecular mechanisms of action are not fully understood. In this paper, we describe a novel Munc18-1 mutant in the central cavity that showed a reduced interaction with syntaxin 1A and impaired chaperone function, but still bound to assembled SNARE complexes and promoted liposome fusion and secretion in neuroendocrine cells. Soluble syntaxin 1A H3 domain partially blocks Munc18-1 activation of liposome fusion by occupying the Munc18-1 central cavity. Our findings lead us to propose a transition model between the two distinct binding modes by which Munc18 can control and assist in SNARE-complex assembly during neurotransmitter release.
机译:Sec1 / Munc18蛋白在细胞内膜运输的多个步骤中起着基本作用。 Munc18-1具有双重功能:与单体语法1A相互作用时,它可以充当伴侣分子的双重角色;当与Munc18-1结合时,它可以激活可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)进行膜融合。 SNARE复合体。尽管两种结合方式都涉及Munc18-1的中央腔,但它们的确切分子作用机理尚不完全清楚。在本文中,我们描述了中央腔中的新型Munc18-1突变体,该突变体与语法1A的相互作用减少且伴侣功能受损,但仍与组装的SNARE复合物结合,并促进了脂质体的融合和神经内分泌细胞的分泌。可溶性语法在1A H3域中,通过占据Munc18-1中央腔来部分阻断脂质体融合的Munc18-1活化。我们的发现使我们提出了两种不同的结合模式之间的过渡模型,通过该模型,Munc18可以控制和协助神经递质释放过程中的SNARE复合体组装。

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