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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >The reserve pool of synaptic vesicles acts as a buffer for proteins involved in synaptic vesicle recycling
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The reserve pool of synaptic vesicles acts as a buffer for proteins involved in synaptic vesicle recycling

机译:突触小泡的储备池充当了突触小泡循环中涉及的蛋白质的缓冲液

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摘要

Presynaptic nerve terminals contain between several hundred vesicles (for example in small CNS synapses) and several tens of thousands (as in neuromuscular junctions). Although it has long been assumed that such high numbers of vesicles are required to sustain neurotransmission during conditions of high demand, we found that activity in vivo requires the recycling of. only a few percent of the vesicles. However, the maintenance of large amounts of reserve vesicles in many evolutionarily distinct species suggests that they are relevant for synaptic function. We suggest here that these vesicles constitute buffers for soluble accessory proteins involved in vesicle recycling, preventing their loss into the axon. Supporting this hypothesis, we found that vesicle clusters contain a large variety of proteins needed for vesicle recycling, but without an obvious function within the clusters. Disrupting the clusters by application of black widow spider venom resulted in the diffusion of numerous soluble proteins into the axons. Prolonged stimulation and ionomy-cin application had a similar effect, suggesting that calcium influx causes the unbjnding of soluble proteins from vesicles. Confirming this hypothesis, we found that isolated synaptic vesicles in vitro sequestered soluble proteins from the cytosol in a process that was inhibited by calcium addition. We conclude that the reserve vesicles support neurotransmission indirectly, ensuring that soluble recycling proteins are delivered upon demand during synaptic activity.
机译:突触前神经末梢包含数百个囊泡(例如在小的CNS突触中)至几万个囊泡(例如在神经肌肉接头中)。尽管长期以来一直认为在高需求条件下维持神经传递需要大量的囊泡,但我们发现体内的活性需要循环利用。只有百分之几的囊泡。但是,在许多进化上不同的物种中大量储备小泡的维持表明它们与突触功能有关。我们在这里建议这些囊泡构成参与囊泡回收的可溶性辅助蛋白的缓冲液,以防止其流失到轴突中。支持该假设的我们发现,囊泡簇含有多种蛋白质,这些蛋白质是囊泡回收所必需的,但在簇内没有明显的功能。通过使用黑寡妇蜘蛛毒液破坏簇,导致许多可溶性蛋白扩散到轴突中。长时间的刺激和离子霉素的应用具有相似的效果,这表明钙内流导致囊泡中可溶性蛋白质的清除。证实这一假设,我们发现离体的突触小泡在体外受到钙添加抑制的过程中从细胞质中隔离了可溶性蛋白。我们得出的结论是,储备囊泡间接支持神经传递,确保在突触活动期间可溶的回收蛋白按需提供。

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  • 作者单位

    European Neuroscience Institute, Deutsche Forschungsgemeinschaft Center for Molecular Physiology of the Brain/Excellence Cluster 171, 37077 Gottingen,Germany,International Max-Planck Research School Molecular Biology, 37077 Gottingen, Germany, and Departments of Max-Planck Institute for Biophysical Chemistry, 37077 Gottingen, Germany;

    European Neuroscience Institute, Deutsche Forschungsgemeinschaft Center for Molecular Physiology of the Brain/Excellence Cluster 171, 37077 Gottingen,Germany;

    NanoBioPhotonics and Max-Planck Institute for Biophysical Chemistry, 37077 Gottingen, Germany;

    Membrane Biophysics, Max-Planck Institute for Biophysical Chemistry, 37077 Gottingen, Germany;

    European Neuroscience Institute, Deutsche Forschungsgemeinschaft Center for Molecular Physiology of the Brain/Excellence Cluster 171, 37077 Gottingen,Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    buffering; clathrin; synapsin; stimulated emission depletion microscopy; latrotoxin;

    机译:缓冲网格蛋白突触蛋白激发发射耗尽显微镜乳毒素;

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