Department of Physiology and Neurobiology, Faculty of Health Sciences, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
J Neurochem. 2012 Jan;120(2):248-58. doi: 10.1111/j.1471-4159.2011.07579.x. Epub 2011 Dec 2.
The synaptic vesicle cycle encompasses the pre-synaptic events that drive neurotransmission. Influx of calcium leads to the fusion of synaptic vesicles with the plasma membrane and the release of neurotransmitter, closely followed by endocytosis. Vacated release sites are repopulated with vesicles which are then primed for release. When activity is intense, reserve vesicles may be mobilized to counteract an eventual decline in transmission. Recently, interplay between endocytosis and repopulation of the readily releasable pool of vesicles has been identified. In this study, we show that exo-endocytosis is necessary to enable detachment of synapsin from reserve pool vesicles during synaptic activity. We report that blockage of exocytosis in cultured mouse hippocampal neurons, either by tetanus toxin or by the deletion of munc13, inhibits the activity-dependent redistribution of synapsin from the pre-synaptic terminal into the axon. Likewise, perturbation of endocytosis with dynasore or by a dynamin dominant-negative mutant fully prevents synapsin redistribution. Such inhibition of synapsin redistribution occurred despite the efficient phosphorylation of synapsin at its protein kinase A/CaMKI site, indicating that disengagement of synapsin from the vesicles requires exocytosis and endocytosis in addition to phosphorylation. Our results therefore reveal hitherto unidentified feedback within the synaptic vesicle cycle involving the synapsin-managed reserve pool.
突触囊泡循环包括驱动神经传递的前突触事件。钙离子内流导致突触囊泡与质膜融合,神经递质释放,随后迅速发生内吞作用。排空的释放位点被重新填充囊泡,然后为释放做好准备。当活动剧烈时,储备囊泡可能被动员起来以抵消最终的传递下降。最近,内吞作用和囊泡可立即释放池的再填充之间的相互作用已被确定。在这项研究中,我们表明,内吞作用对于在突触活动期间使突触结合蛋白从储备池囊泡上脱离是必要的。我们报告说,在培养的小鼠海马神经元中,无论是通过破伤风毒素还是通过 munc13 的缺失阻断胞吐作用,都会抑制突触结合蛋白从突触前末端向轴突中的活性依赖性再分布。同样,用 dynasore 或 dynamin 显性负突变体扰动内吞作用会完全阻止突触结合蛋白的再分布。尽管突触结合蛋白在其蛋白激酶 A/CaMKI 位点被有效磷酸化,但这种突触结合蛋白再分布的抑制表明,突触结合蛋白与囊泡的脱离除了需要磷酸化外,还需要胞吐作用和内吞作用。因此,我们的结果揭示了突触囊泡循环中涉及突触结合蛋白管理的储备池的以前未被识别的反馈。