首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Calcium dependence of neurotransmitter release and rate of spontaneous vesicle fusions are altered in Drosophila synaptotagmin mutants.
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Calcium dependence of neurotransmitter release and rate of spontaneous vesicle fusions are altered in Drosophila synaptotagmin mutants.

机译:果蝇突触突触素突变体中钙的神经递质释放和自发囊泡融合率的钙依赖性改变。

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摘要

Since the demonstration that Ca2+ influx into the presynaptic terminal is essential for neurotransmitter release, there has been much speculation about the Ca2+ receptor responsible for initiating exocytosis. Numerous experiments have shown that the protein, or protein complex, binds multiple Ca2+ ions, resides near the site of Ca2+ influx, and has a relatively low affinity for Ca2+. Synaptotagmin is an integral membrane protein of synaptic vesicles that contains two copies of a domain known to be involved in Ca(2+)-dependent membrane interactions. Synaptotagmin has been shown to bind Ca2+ in vitro with a relatively low affinity. In addition, synaptotagmin has been shown to bind indirectly to Ca2+ channels, positioning the protein close to the site of Ca2+ influx. Recently, a negative regulatory role for synaptotagmin has been proposed, in which it functions as a clamp to prevent fusion of synaptic vesicles with the presynaptic membrane. Release of the clamp would allow exocytosis. Here we present genetic and electrophysiological evidence that synaptotagmin forms a multimeric complex that can function as a clamp in vivo. However, upon nerve stimulation and Ca2+ influx, all synaptotagmin mutations dramatically decrease the ability of Ca2+ to promote release, suggesting that synaptotagmin probably plays a key role in activation of synaptic vesicle fusion. This activity cannot simply be attributed to the removal of a barrier to secretion, as we can electrophysiologically separate the increase in rate of spontaneous vesicle fusion from the decrease in evoked response. We also find that some syt mutations, including those that lack the second Ca(2+)-binding domain, decrease the fourth-order dependence of release on Ca2+ by approximately half, consistent with the hypothesis that a synaptotagmin complex functions as a Ca2+ receptor for initiating exocytosis.
机译:自从证明Ca2 +流入突触前末端对于神经递质的释放是必不可少的以来,人们一直对Ca2 +受体引起胞吐作用的推测颇多。许多实验表明,该蛋白质或蛋白质复合物结合多个Ca2 +离子,位于Ca2 +流入部位附近,并且对Ca2 +的亲和力较低。 Synaptotagmin是突触小泡的整合膜蛋白,包含两个副本的域,已知与Ca(2+)依赖的膜相互作用有关。已经显示突触标签素在体外以相对低的亲和力结合Ca 2+。此外,已显示突触结合素间接结合Ca2 +通道,使蛋白质接近Ca2 +流入位点。最近,已经提出了突触标记素的负调节作用,其中它起着防止突触囊泡与突触前膜融合的作用。释放钳将允许胞吐作用。在这里,我们提供了遗传和电生理学证据,认为突触结合蛋白形成了一种多聚体复合物,可以在体内起钳位作用。但是,在神经刺激和Ca2 +大量涌入后,所有突触标记素突变都会显着降低Ca2 +促进释放的能力,这表明突触标记素可能在激活突触囊泡融合中起关键作用。这种活动不能简单地归因于分泌障碍的消除,因为我们可以从电生理角度将自发囊泡融合率的增加与诱发反应的减少区分开。我们还发现,某些syt突变,包括那些缺少第二个Ca(2+)结合域的突变,可使释放对Ca2 +的四阶依赖性降低大约一半,这与突触结合蛋白复合物充当Ca2 +受体的假设相符。引发胞吐作用。

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