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Rolling Blackout Is Required for Synaptic Vesicle Exocytosis

机译:突触囊泡胞吐作用需要滚动停电

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摘要

Rolling blackout (RBO) is a putative transmembrane lipase required for phospholipase C-dependent phosphatidylinositol 4,5-bisphosphate–diacylglycerol signaling in Drosophila neurons. Conditional temperature-sensitive (TS) rbo mutants display complete, reversible paralysis within minutes, demonstrating that RBO is acutely required for movement. RBO protein is localized predominantly in presynaptic boutons at neuromuscular junction (NMJ) synapses and throughout central synaptic neuropil, and rbo TS mutants display a complete, reversible block of both central and peripheral synaptic transmission within minutes. This phenotype appears limited to adults, because larval NMJs do not manifest the acute blockade. Electron microscopy of adult rbo TS mutant boutons reveals an increase in total synaptic vesicle (SV) content, with a concomitant shrinkage of presynaptic bouton size and an accumulation of docked SVs at presynaptic active zones within minutes. Genetic tests reveal a synergistic interaction between rbo and syntaxin1A TS mutants, suggesting that RBO is required in the mechanism of N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE)-mediated SV exocytosis, or in a parallel pathway necessary for SV fusion. The rbo TS mutation does not detectably alter SNARE complexassembly, suggesting a downstream requirement in SV fusion. We conclude that RBO plays anessential role in neurotransmitter release, downstream of SV docking, likely mediating SVfusion.
机译:滚动停电(RBO)是果蝇神经元中磷脂酶C依赖的磷脂酰肌醇4,5-二磷酸-二酰甘油信号传导所必需的假定跨膜脂肪酶。有条件的温度敏感(TS)rbo突变体在数分钟内显示出完整的可逆性瘫痪,表明运动迫切需要RBO。 RBO蛋白主要位于神经肌肉接头(NMJ)突触处和整个中枢突触Neuropil的突触前钮扣中,并且rbo TS突变体在数分钟内显示中枢和外周突触传递的完整,可逆性阻滞。这种表型似乎仅限于成年人,因为幼虫NMJ并未表现出急性阻塞。成人rbo TS突变体boutons的电子显微镜显示,总的突触小泡(SV)含量增加,伴随着突触前bouton尺寸的缩小和停靠的SVs在几分钟内在突触前活动区的积累。遗传学测试揭示了rbo和syntaxin1A TS突变体之间的协同相互作用,这表明RBO是N-乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)介导的SV胞吐作用或SV融合所必需的平行途径中所必需的。 rbo TS突变不会发现可改变的SNARE复杂物组装,表明SV融合的下游要求。我们得出结论,RBO扮演着在神经递质释放,SV对接下游,可能介导SV中起重要作用融合。

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