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SNARE and regulatory proteins induce local membrane protrusions to prime docked vesicles for fast calcium-triggered fusion

机译:SNARE和调节蛋白诱导局部膜突出至初次固定的囊泡,以实现钙触发的快速融合

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Synaptic vesicles fuse with the plasma membrane in response to Ca~(2+) influx, thereby releasing neurotransmitters into the synaptic cleft. The protein machinery that mediates this process, consisting of soluble N-ethylmaleimide-sensitive factor attachment protein receptors (SNAREs) and regulatory proteins, is well known, but the mechanisms by which these proteins prime synaptic membranes for fusion are debated. In this study, we applied large-scale, automated cryo-electron tomography to image an in vitro system that reconstitutes synaptic fusion. Our findings suggest that upon docking and priming of vesicles for fast Ca~(2+)-triggered fusion, SNARE proteins act in concert with regulatory proteins to induce a local protrusion in the plasma membrane, directed towards the primed vesicle. The SNAREs and regulatory proteins thereby stabilize the membrane in a high-energy state from which the activation energy for fusion is profoundly reduced, allowing synchronous and instantaneous fusion upon release of the complexin clamp.
机译:突触小泡响应Ca〜(2+)流入而与质膜融合,从而将神经递质释放到突触间隙中。介导此过程的蛋白机制由可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)和调节蛋白组成,是众所周知的,但是这些蛋白引发突触膜融合的机制尚有争议。在这项研究中,我们应用了大规模的自动低温电子断层成像技术来成像重建突触融合的体外系统。我们的发现表明,在对接囊泡并引发囊泡以快速进行Ca〜(2+)触发的融合后,SNARE蛋白与调节蛋白协同作用,从而诱导质膜向着囊泡的局部突出。因此,SNARE和调节蛋白将膜稳定在高能状态,从中大大降低了融合的活化能,从而在释放复合蛋白钳时实现了同步和瞬时融合。

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