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Mechanical unzipping and rezipping of a single SNARE complex reveals hysteresis as a force-generating mechanism

机译:对单个SNARE复合体的机械解压缩和重新解压缩揭示了滞后现象,这是一种产生力的机制

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Formation of the soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) complex provides mechanical thrust for membrane fusion, but its molecular mechanism is still unclear. Here using magnetic tweezers, we observe mechanical responses of a single neuronal SNARE complex under constant pulling force. Single SNARE complexes may be unzipped with 34?pN force. When rezipping is induced by lowering the force to 11?pN, only a partially assembled state results, with the C-terminal half of the SNARE complex remaining disassembled. Reassembly of the C-terminal half occurs only when the force is further lowered below 11?pN. Thus, mechanical hysteresis, characterized by the unzipping and rezipping cycle of a single SNARE complex, produces the partially assembled state. In this metastable state, unzipping toward the N-terminus is suppressed while zippering toward the C-terminus is initiated as a steep function of force. This ensures the directionality of SNARE-complex formation, making the SNARE complex a robust force-generating machine.
机译:可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)复合物的形成为膜融合提供了机械推力,但其分子机制仍不清楚。在这里,我们使用磁性镊子在恒定拉力下观察单个神经元SNARE复合体的机械响应。单个SNARE复合物可以用34?pN的力拉开拉链。当通过将力降低至11?pN引起重新压缩时,只会得到部分组装的状态,而SNARE络合物的C端一半仍处于分解状态。仅当力进一步降低到11?pN以下时,才进行C端半部的重新组装。因此,以单个SNARE配合物的解压缩和重新压缩周期为特征的机械滞后会产生部分组装状态。在这种亚稳定状态下,随着力的陡峭作用,向着N端的拉锁被抑制,而向着C端的拉锁开始了。这确保了SNARE复合体形成的方向性,使SNARE复合体成为强大的力产生机。

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