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The structure and function of 'active zone material' at synapses

机译:突触中“活动区材料”的结构和功能

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The docking of synaptic vesicles on the presynaptic membrane and their priming for fusion with it to mediate synaptic transmission of nerve impulses typically occur at structurally specialized regions on the membrane called active zones. Stable components of active zones include aggregates of macromolecules, 'active zone material' (AZM), attached to the presynaptic membrane, and aggregates of Ca2+-channels in the membrane, through which Ca2+ enters the cytosol to trigger impulse-evoked vesicle fusion with the presynaptic membrane by interacting with Ca2+-sensors on the vesicles. This laboratory has used electron tomography to study, at macromolecular spatial resolution, the structure and function of AZM at the simply arranged active zones of axon terminals at frog neuromuscular junctions. The results support the conclusion that AZMdirects the docking and priming of synaptic vesicles and essential positioning of Ca2+-channels relative to the vesicles' Ca2+-sensors. Herewe reviewthe findings and comment on their applicability to understanding mechanisms of docking, priming and Ca2+-triggering at other synapses, where the arrangement of active zone components differs.
机译:突触小泡在突触前膜上的对接及其引发的融合以介导神经冲动的突触传递通常发生在膜上被称为活动区的结构特殊区域。活性区的稳定成分包括大分子的聚集体,附着于突触前膜的“活性区材料”(AZM)以及膜中Ca2 +通道的聚集体,Ca2 +通过其进入细胞溶质以触发脉冲诱发的囊泡与小泡融合。突触前膜与囊泡上的Ca2 +传感器相互作用。该实验室已使用电子断层扫描技术以大分子空间分辨率研究了青蛙神经肌肉连接处轴突末端简单排列的活性区中AZM的结构和功能。该结果支持以下结论:AZM指导突触小泡的对接和引发,以及Ca2 +通道相对于小泡的Ca2 +传感器的基本定位。在这里,我们审查的发现,并评论其适用于了解在其他突触,对接,启动和Ca 2 +触发机制,其中活动区域组件的排列方式有所不同。

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