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首页> 外文期刊>Molecular biology of the cell >Synaptic neuropeptide release by dynamin-dependent partial release from circulating vesicles
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Synaptic neuropeptide release by dynamin-dependent partial release from circulating vesicles

机译:从循环囊泡中通过动力蛋白部分释放来释放突触神经肽

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Neurons release neuropeptides, enzymes, and neurotrophins by exocytosis of dense-core vesicles (DCVs). Peptide release from individual DCVs has been imaged in vitro with endocrine cells and at the neuron soma, growth cones, neurites, axons, and dendrites but not at nerve terminals, where peptidergic neurotransmission occurs. Single presynaptic DCVs have, however, been tracked in native terminals with simultaneous photobleaching and imaging (SPAIM) to show that DCVs undergo anterograde and retrograde capture as they circulate through en passant boutons. Here dynamin (encoded by the shibire gene) is shown to enhance activity-evoked peptide release at the Drosophila neuromuscular junction. SPAIM demonstrates that activity depletes only a portion of a single presynaptic DCV's content. Activity initiates exocytosis within seconds, but subsequent release occurs slowly. Synaptic neuropeptide release is further sustained by DCVs undergoing multiple rounds of exocytosis. Synaptic neuropeptide release is surprisingly similar regardless of anterograde or retrograde DCV transport into boutons, bouton location, and time of arrival in the terminal. Thus vesicle circulation and bidirectional capture supply synapses with functionally competent DCVs. These results show that activity-evoked synaptic neuropeptide release is independent of a DCV's past traffic and occurs by slow, dynamin-dependent partial emptying of DCVs, suggestive of kiss-and-run exocytosis.
机译:神经元通过密集核心囊泡(DCV)的胞吐作用释放神经肽,酶和神经营养蛋白。从单个DCV释放的肽已在体外用内分泌细胞成像,并在神经元体,生长锥,神经突,轴突和树突处成像,但在发生肽能神经传递的神经末梢没有成像。然而,单个突触前DCVs已在本地终端中进行了同步光漂白和成像(SPAIM)跟踪,以显示DCVs在通过遍及的胸腺循环时经历顺行和逆行捕获。在这里,dynamin(由抑制基因编码)显示出增强果蝇神经肌肉接头处的活性诱发的肽释放。 SPAIM证明,活动仅消耗单个突触前DCV内容的一部分。活动在几秒钟内启动胞吐作用,但随后的释放缓慢发生。突触神经肽的释放通过经历多轮胞吐作用的DCV得以进一步维持。突触神经肽的释放惊人地相似,无论顺行或逆行DCV转运到胸腺,胸腺位置和到达终末时间。因此,囊泡循环和双向捕获供应与功能上合适的DCV突触。这些结果表明,活性诱发的突触神经肽释放与DCV的过去流量无关,并且通过DCV的缓慢,动力依赖的部分排空而发生,提示亲吻和奔跑的胞吐作用。

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