首页> 美国卫生研究院文献>The Journal of Physiology >Cholesterol and F-actin are required for clustering of recycling synaptic vesicle proteins in the presynaptic plasma membrane
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Cholesterol and F-actin are required for clustering of recycling synaptic vesicle proteins in the presynaptic plasma membrane

机译:在突触前质膜中聚集再循环突触小泡蛋白需要胆固醇和F-肌动蛋白

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摘要

>AbstractSynaptic vesicles (SVs) and their proteins must be recycled for sustained synaptic transmission. We tested the hypothesis that SV cholesterol is required for proper sorting of SV proteins during recycling in live presynaptic terminals. We used the reversible block of endocytosis in the Drosophila temperature-sensitive dynamin mutant shibire-ts1 to trap exocytosed SV proteins, and then examined the effect of experimental treatments on the distribution of these proteins within the presynaptic plasma membrane by confocal microscopy. SV proteins synaptotagmin, vglut and csp were clustered following SV trapping in control experiments but dispersed in samples treated with the cholesterol chelator methyl-β-cyclodextrin to extract SV cholesterol. There was accumulation of phosphatidylinositol (4,5)-bisphosphate (PIP2) in presynaptic terminals following SV trapping and this was reduced following SV cholesterol extraction. Reduced PIP2 accumulation was associated with disrupted accumulation of actin in presynaptic terminals. Similar to vesicular cholesterol extraction, disruption of actin by latrunculin A after SV proteins had been trapped on the plasma membrane resulted in the dispersal of SV proteins and prevented recovery of synaptic transmission due to impaired endocytosis following relief of the endocytic block. Our results demonstrate that vesicular cholesterol is required for aggregation of exocytosed SV proteins in the presynaptic plasma membrane and are consistent with a mechanism involving regulation of PIP2 accumulation and local actin polymerization by cholesterol. Thus, alteration of membrane or SV lipids may affect the ability of synapses to undergo sustained synaptic transmission by compromising the recycling of SV proteins.
机译:>摘要,必须回收突触小泡(SVs)及其蛋白,以实现持续的突触传递。我们检验了以下假设:在活突触前末端循环期间,SV胆固醇是正确分类SV蛋白所必需的。我们使用果蝇温度敏感的dynamin突变体shibire-ts1中的可逆性内吞作用来捕获胞吐的SV蛋白,然后通过共聚焦显微镜检查实验处理对这些蛋白在突触前质膜内分布的影响。 SV蛋白突触后标记蛋白,vglut和csp在对照实验中在SV捕获后聚集,但分散在用胆固醇螯合剂甲基-β-环糊精处理的样品中以提取SV胆固醇。 SV捕集后,突触前末端有磷脂酰肌醇(4,5)-双磷酸(PIP2)积累,而SV胆固醇提取后,这种积累减少了。 PIP2积累减少与突触前终末肌动蛋白积累受到破坏有关。与囊泡胆固醇提取相似,SV蛋白被捕获在质膜上后,拉特朗霉素A对肌动蛋白的破坏导致SV蛋白的分散并阻止了内吞阻滞缓解后内吞功能受损导致的突触传递恢复。我们的结果表明,囊泡胆固醇是突触前质膜中胞吐的SV蛋白聚集所必需的,并且与涉及胆固醇调节PIP2积累和局部肌动蛋白聚合的机制是一致的。因此,膜或SV脂质的改变可能会通过破坏SV蛋白的再循环而影响突触进行持续突触传递的能力。

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