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Distinct roles for two synaptotagmin isoforms in synchronous and asynchronous transmitter release at zebrafish neuromuscular junction

机译:在斑马鱼神经肌肉交界处同步和异步递质释放中两种突触结合蛋白亚型的不同作用

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摘要

An obligatory role for the calcium sensor synaptotagmins in stimulus-coupled release of neurotransmitter is well established, but a role for synaptotagmin isoform involvement in asynchronous release remains conjecture. We show, at the zebrafish neuromuscular synapse, that two separate synaptotagmins underlie these processes. Specifically, knockdown of synaptotagmin 2 (syt2) reduces synchronous release, whereas knockdown of synaptotagmin 7 (syt7) reduces the asynchronous component of release. The zebrafish neuromuscular junction is unique in having a very small quantal content and a high release probability under conditions of either low-frequency stimulation or high-frequency augmentation. Through these features, we further determined that during the height of shared synchronous and asynchronous transmission these two modes compete for the same release sites.
机译:钙传感器突触素在刺激性神经递质的偶联释放中的强制性作用已得到很好的确立,但突触素同工型参与异步释放的作用仍是推测。我们在斑马鱼的神经肌肉突触中显示,两个独立的突触标记蛋白是这些过程的基础。具体而言,敲低突触标记素2(syt2)减少同步释放,而敲低突触标记素7(syt7)降低释放的异步成分。斑马鱼神经肌肉接头在低频刺激或高频增强的条件下具有非常小的定量含量和高释放概率的独特之处。通过这些功能,我们进一步确定,在共享同步和异步传输的高峰期,这两种模式争夺相同的发布站点。

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