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Fusion Competent Synaptic Vesicles Persist upon Active Zone Disruption and Loss of Vesicle Docking

机译:融合感受态突触囊泡持续活动区破坏和囊泡停靠的损失。

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In a nerve terminal, synaptic vesicle docking and release are restricted to an active zone. The active zone is a protein scaffold that is attached to the presynaptic plasma membrane and opposed to postsynaptic receptors. Here, we generated conditional knockout mice removing the active zone proteins RIM and ELKS, which additionally led to loss of Munc13, Bassoon, Piccolo, and RIM-BP, indicating disassembly of the active zone. We observed a near-complete lack of synaptic vesicle docking and a strong reduction in vesicular release probability and the speed of exocytosis, but total vesicle numbers, SNARE protein levels, and postsynaptic densities remained unaffected. Despite loss of the priming proteins Munc13 and RIM and of docked vesicles, a pool of releasable vesicles remained. Thus, the active zone is necessary for synaptic vesicle docking and to enhance release probability, but releasable vesicles can be localized distant from the presynaptic plasma membrane.
机译:在神经末梢,突触小泡对接和释放仅限于活动区。活性区是附着于突触前质膜并与突触后受体相对的蛋白质支架。在这里,我们生成了有条件的基因敲除小鼠,去除了活性区蛋白RIM和ELKS,这另外导致了Munc13,Bassoon,短笛和RIM-BP的丢失,表明活性区的拆卸。我们观察到几乎完全没有突触小泡停靠,并大大减少了小泡释放的可能性和胞吐速度,但总小泡数目,SNARE蛋白水平和突触后密度仍然不受影响。尽管丢失了启动蛋白Munc13和RIM以及对接的囊泡,但仍保留了一组可释放的囊泡。因此,活性区对于突触小泡对接和增加释放概率是必需的,但是可释放的小泡可以位于远离突触前质膜的位置。

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