首页> 外文期刊>Neuron >Clathrin/AP-2 mediate synaptic vesicle reformation from endosome-like vacuoles but are not essential for membrane retrieval at central synapses
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Clathrin/AP-2 mediate synaptic vesicle reformation from endosome-like vacuoles but are not essential for membrane retrieval at central synapses

机译:网格蛋白/ AP-2介导来自内体样液泡的突触小泡再形成,但对于中央突触的膜恢复不是必需的

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摘要

Neurotransmission depends on presynaptic membrane retrieval and local reformation of synaptic vesicles (SVs) at nerve terminals. The mechanisms involved in these processes are highly controversial with evidence being presented for SV membranes being retrieved exclusively via clathrin-mediated endocytosis (CME) from the plasma membrane or via ultrafast endocytosis independent of clathrin. Here we show that clathrin and its major adaptor protein 2 (AP-2) in addition to the plasma membrane operate at internal endosome-like vacuoles to regenerate SVs but are not essential for membrane retrieval. Depletion of clathrin or conditional knockout of AP-2 result in defects in SV reformation and an accumulation of endosome-like vacuoles generated by clathrin-independent endocytosis (CIE) via dynamin 1/3 and endophilin. These results together with theoretical modeling provide a conceptual framework for how synapses capitalize on clathrin-independent membrane retrieval and clathrin/AP-2-mediated SV reformation from endosome-like vacuoles to maintain excitability over a broad range of stimulation frequencies.
机译:神经传递依赖于突触前膜的恢复和神经末梢突触小泡(SVs)的局部重建。这些过程涉及的机制极富争议性,有证据表明SV膜仅通过网格蛋白介导的内吞作用(CME)从质膜中回收,或者通过独立于网格蛋白的超快内吞作用而被回收。在这里,我们显示网格蛋白及其主要的衔接蛋白2(AP-2)除质膜外,还在内部的内体样液泡中再生SV,但对于膜回收不是必需的。网格蛋白的耗竭或有条件的敲除AP-2会导致SV重组缺陷,以及由网格蛋白非依赖性内吞作用(CIE)通过动力蛋白1/3和内啡肽产生的内体样液泡积聚。这些结果与理论模型一起提供了一个概念框架,说明突触如何利用与网格蛋白无关的膜修复以及网格蛋白/ AP-2介导的SV重组(来自内体样液泡)来维持在广泛的刺激频率范围内的兴奋性。

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