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Sensing Exocytosis and Triggering Endocytosis at Synapses: Synaptic Vesicle Exocytosis–Endocytosis Coupling

机译:在突触中感知胞吐和触发胞吞:突触囊泡胞吞-胞吞耦合

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摘要

The intact synaptic structure is critical for information processing in neural circuits. During synaptic transmission, rapid vesicle exocytosis increases the size of never terminals and endocytosis counteracts the increase. Accumulating evidence suggests that SV exocytosis and endocytosis are tightly connected in time and space during SV recycling, and this process is essential for synaptic function and structural stability. Research in the past has illustrated the molecular details of synaptic vesicle (SV) exocytosis and endocytosis; however, the mechanisms that timely connect these two fundamental events are poorly understood at central synapses. Here we discuss recent progress in SV recycling and summarize several emerging mechanisms by which synapses can “sense” the occurrence of exocytosis and timely initiate compensatory endocytosis. They include Ca2+ sensing, SV proteins sensing, and local membrane stress sensing. In addition, the spatial organization of endocytic zones adjacent to active zones provides a structural basis for efficient coupling between SV exocytosis and endocytosis. Through linking different endocytosis pathways with SV fusion, these mechanisms ensure necessary plasticity and robustness of nerve terminals to meet diverse physiological needs.
机译:完整的突触结构对于神经回路中的信息处理至关重要。在突触传递过程中,快速的囊泡胞吐作用增加了永不终止的大小,内吞作用抵消了这种增加。越来越多的证据表明,SV的回收过程中,SV的胞吐作用和胞吞作用在时间和空间上紧密相连,这一过程对于突触功能和结构稳定性至关重要。过去的研究已经阐明了突触小泡(SV)胞吐作用和胞吞作用的分子细节。然而,及时将这两个基本事件联系起来的机制在中央突触中却鲜为人知。在这里,我们讨论了SV回收的最新进展,并总结了几种新兴机制,通过这些机制突触可以“感知”胞吐作用的发生并及时启动代偿性内吞作用。它们包括Ca 2 + 感应,SV蛋白感应和局部膜应力感应。另外,与活性区相邻的胞吞区的空间组织为SV胞吐作用和胞吞作用之间的有效偶联提供了结构基础。通过将不同的内吞途径与SV融合联系起来,这些机制可确保神经末梢具有必要的可塑性和坚固性,以满足各种生理需求。

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