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Active Zone Material-Directed Orientation, Docking, and Fusion of Dense Core Vesicles Alongside Synaptic Vesicles at Neuromuscular Junctions

机译:有源区材料定向方向,对接和侧孔囊泡的融合在神经肌肉连接处的突出囊泡

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摘要

Active zone material is an organelle that is common to active zones along the presynaptic membrane of chemical synapses. Electron tomography on active zones at frog neuromuscular junctions has provided evidence that active zone material directs the docking of synaptic vesicles (SVs) on the presynaptic membrane at this synapse. Certain active zone material macromolecules connect to stereotypically arranged macromolecules in the membrane of undocked SVs, stably orienting a predetermined fusion domain of the vesicle membrane toward the presynaptic membrane while bringing and holding the two membranes together. Docking of the vesicles is required for the impulse-triggered vesicle membrane-presynaptic membrane fusion that releases the vesicles’ neurotransmitter into the synaptic cleft. As at other synapses, axon terminals at frog neuromuscular junctions contain, in addition to SVs, vesicles that are larger, are much less frequent and, when viewed by electron microscopy, have a distinctive electron dense core. Dense core vesicles at neuromuscular junctions are likely to contain peptides that are released into the synaptic cleft to regulate formation, maintenance and behavior of cellular apparatus essential for synaptic impulse transmission. We show by electron tomography on axon terminals of frog neuromuscular junctions fixed at rest and during repetitive impulse transmission that dense core vesicles selectively dock on and fuse with the presynaptic membrane alongside SVs at active zones, and that active zone material connects to the dense core vesicles undergoing these processes in the same way it connects to SVs. We conclude that undocked dense core vesicles have a predetermined fusion domain, as do undocked SVs, and that active zone material directs oriented docking and fusion of these different vesicle types at active zones of the presynaptic membrane by similar macromolecular interactions.
机译:有源区材料是沿着化学突触的突触前膜的有源区常见的细胞器。青蛙神经肌肉连接处的有源区上的电子断层扫描提供了证据,即有源区材料指示在该突触在突触膜上的突触囊泡(SV)对接。某些有源区材料大分子在未缓解的SV的膜中连接到立体型布置的大分子,稳定地定向囊泡膜的预定融合域,同时使两个膜一起延伸并将两个膜置于突触膜。脉冲触发的囊泡膜 - 突出膜融合需要对接囊泡需要将囊泡的神经递质释放到突触裂缝中。如在其他突触中,FroG神经肌肉连接处的轴突末端含有,除了SVS之外,较大的囊泡是较小的,并且当通过电子显微镜观察时,具有独特的电子致密芯。神经肌肉交叉点的致密芯囊泡可能含有释放到突触裂缝中的肽,以调节突触脉冲传输必然的细胞仪的形成,维护和行为。我们通过电子断层扫描在休息时固定的青蛙神经肌肉连接件的电子断层扫描显示,并且在重复脉冲传输期间,致密的芯囊泡在有源区旁边的SVS选择性地停靠并熔断突触膜,并且有源区材料连接到致密的芯囊泡以与其连接到SVS的方式接受这些过程。我们得出结论,取消缓脱的致密芯囊泡具有预定的融合域,如未酷的SVS,并且通过类似的大分子相互作用将这些不同囊泡类型的主动区直接导向与这些不同囊泡类型的定向对接和融合。

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