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Myosin V functions as a vesicle tether at the plasma membrane to control neurotransmitter release in central synapses

机译:肌球蛋白V在质膜上起囊泡束缚的作用,以控制中枢突触中神经递质的释放

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摘要

Synaptic vesicle fusion occurs at specialized release sites at the active zone. How refilling of release sites with new vesicles is regulated in central synapses remains poorly understood. Using nanoscale-resolution detection of individual release events in rat hippocampal synapses we found that inhibition of myosin V, the predominant vesicle-associated motor, strongly reduced refilling of the release sites during repetitive stimulation. Single-vesicle tracking revealed that recycling vesicles continuously shuttle between a plasma membrane pool and an inner pool. Vesicle retention at the membrane pool was regulated by neural activity in a myosin V dependent manner. Ultrastructural measurements of vesicle occupancy at the plasma membrane together with analyses of single-vesicle trajectories during vesicle shuttling between the pools suggest that myosin V acts as a vesicle tether at the plasma membrane, rather than a motor transporting vesicles to the release sites, or directly regulating vesicle exocytosis.
机译:突触小泡融合发生在活性区的专门释放部位。在中枢突触中如何用新的囊泡填充释放位点的调控仍知之甚少。使用大鼠海马突触中单个释放事件的纳米级分辨率检测,我们发现抑制肌球蛋白V(主要与囊泡相关的运动)可以在重复刺激过程中大大减少释放位点的重新填充。单囊泡跟踪显示回收的囊泡在质膜池和内部池之间不断穿梭。通过神经活动以肌球蛋白V依赖性方式调节膜池中的囊泡滞留。超微结构测量质膜上囊泡的占有率,以及在池之间进行囊泡穿梭期间对单囊泡轨迹的分析表明,肌球蛋白V在质膜上起着囊泡束缚的作用,而不是将囊泡运至释放位点或直接将囊泡转运的动力调节囊泡胞吐作用。

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