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SNARE Zippering Is Suppressed by a Conformational Constraint that Is Removed by v-SNARE Splitting

机译:通过V-Snare分裂拆除的构象约束,禁止陷入圈拉链

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Intracellular vesicle fusion is catalyzed by soluble N-ethylmaleimide-sensitive factor attachment protein receptors (SNAREs). Vesicle-anchored v-SNAREs pair with target membrane-associated t-SNAREs to form trans-SNARE complexes, releasing free energy to drive membrane fusion. However, trans-SNARE complexes are unable to assemble efficiently unless activated by Sec1/Munc18 (SM) proteins. Here, we demonstrate that SNAREs become fully active when the v-SNARE is split into two fragments, eliminating the requirement of SM protein activation. Mechanistically, v-SNARE splitting accelerates the zippering of trans-SNARE complexes, mimicking the stimulatory function of SM proteins. Thus, SNAREs possess the full potential to drive efficient membrane fusion but are suppressed by a conformational constraint. This constraint is removed by SM protein activation or v-SNARE splitting. We suggest that ancestral SNAREs originally evolved to be fully active in the absence of SM proteins. Later, a conformational constraint coevolved with SM proteins to achieve the vesicle fusion specificity demanded by complex endomembrane systems.
机译:通过可溶性的N-乙基马来酰亚胺敏感因子附着蛋白受体(SNARES)催化细胞内囊泡融合。囊泡锚定的V-Snares对与靶膜相关的T-anares对形成反式圈套复合物,释放自由能驱动膜融合。然而,除非由SEC1 / MUC18(SM)蛋白质激活,否则反式圈套复合物无法有效组装。在这里,我们证明,当V-Snare分成两个片段时,蛛丝会完全活跃,从而消除了SM蛋白激活的要求。机械地,V-···斯帕雷分裂加速了跨圈络合物的拉链,模拟了SM蛋白的刺激功能。因此,捕获具有驱动有效膜融合的全部电位,而是通过构象约束来抑制。通过SM蛋白激活或V-SNARE分裂除去该约束。我们建议在没有SM蛋白的情况下,祖先捕获最初进化以充分活跃。之后,构象约束与SM蛋白共施加,以实现复杂的内膜系统所需的囊泡融合特异性。

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