Department of Cell Biology, Yale University School of Medicine, New Haven, United States.
Department of Molecular Biology, Princeton University, Princeton, United States.
Elife. 2018 Dec 12;7:e41771. doi: 10.7554/eLife.41771.
Sec1/Munc18-family (SM) proteins are required for SNARE-mediated membrane fusion, but their mechanism(s) of action remain controversial. Using single-molecule force spectroscopy, we found that the SM protein Munc18-1 catalyzes step-wise zippering of three synaptic SNAREs (syntaxin, VAMP2, and SNAP-25) into a four-helix bundle. Catalysis requires formation of an intermediate template complex in which Munc18-1 juxtaposes the N-terminal regions of the SNARE motifs of syntaxin and VAMP2, while keeping their C-terminal regions separated. SNAP-25 binds the templated SNAREs to induce full SNARE zippering. Munc18-1 mutations modulate the stability of the template complex in a manner consistent with their effects on membrane fusion, indicating that chaperoned SNARE assembly is essential for exocytosis. Two other SM proteins, Munc18-3 and Vps33, similarly chaperone SNARE assembly via a template complex, suggesting that SM protein mechanism is conserved.
Sec1/Munc18 家族(SM)蛋白是 SNARE 介导的膜融合所必需的,但它们的作用机制仍存在争议。我们使用单分子力谱技术发现,SM 蛋白 Munc18-1 催化三个突触 SNARE(突触融合蛋白、囊泡相关膜蛋白 2 和突触相关蛋白 25)逐步形成四螺旋束的拉链。催化需要形成一个中间模板复合物,其中 Munc18-1 并列突触融合蛋白和囊泡相关膜蛋白 2 的 SNARE 基序的 N 端区域,同时保持它们的 C 端区域分离。SNAP-25 结合模板化的 SNARE 以诱导完全的 SNARE 拉链。Munc18-1 突变以与其对膜融合的影响一致的方式调节模板复合物的稳定性,表明有被伴侣蛋白引导的 SNARE 组装对于胞吐作用是必需的。另外两种 SM 蛋白,Munc18-3 和 Vps33,通过模板复合物类似地引导 SNARE 组装,表明 SM 蛋白的机制是保守的。