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Phorbol Esters Target the Activity-Dependent Recycling Pool and Spare Spontaneous Vesicle Recycling

机译:Phorbol酯针对活动依赖的回收池和备用的自发囊泡回收

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Using electrophysiology and styryl dye imaging, we studied the effect of phorbol 12-myristate 13-acetate (PMA) on activity-dependent and spontaneous vesicle recycling. In electrophysiological experiments, we found that the PMA effect depended on the maturational state of the synapses. Spontaneous neurotransmitter release from nascent synapses without a functional readily releasable pool (RRP) was unresponsive to PMA application. In contrast, mature synapses responded robustly to PMA application, consistent with previous studies. Using styryl dye imaging, we found that there was a PMA-dependent increase in the size of the RRP when PMA was present before, during, or after activity-dependent dye uptake, suggesting that this effect involves an increase in the population of the RRP by vesicles recruited from the reserve pool. Additionally, we found that when PMA was present during spontaneous dye uptake, there was an increase in dye labeling, and these additional dye-loaded vesicles showed rapid destaining in response to strong stimulation and were also releasable by hypertonic sucrose. In contrast, these observations were not reproducible when PMA treatment was performed after spontaneous dye uptake and extracellular dye washout. Together, these findings suggest that the increased spontaneous neurotransmission in the presence of PMA was attributable to release of vesicles from the RRP rather than an effect of PMA on the spontaneously recycling pool. Thus, the phorbol esters selectively regulate the activity-dependent pool of vesicles, indicating that priming mechanisms that prepare vesicles for fusion, which are targeted by phorbol esters, are different for the spontaneous and evoked forms of fusion.
机译:使用电生理学和苯乙烯基染料成像,我们研究了佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA)对活性依赖性和自发性囊泡回收的影响。在电生理实验中,我们发现PMA效应取决于突触的成熟状态。没有功能性易释放池(RRP)的新生突触自发释放神经递质对PMA的应用无反应。相反,与以前的研究一致,成熟的突触对PMA的应用反应强烈。使用苯乙烯基染料成像,我们发现当PMA存在于活动依赖型染料摄取之前,期间或之后,PMR依赖的RRP大小会增加,这表明该效应涉及RRP种群的增加通过从储备池中募集的囊泡。此外,我们发现当自发吸收染料时存在PMA时,染料标记增加,并且这些附加的载有染料的囊泡在强烈刺激下显示出快速脱色,并且也可被高渗蔗糖释放。相反,当自发摄取染料和清除细胞外染料后进行PMA处理时,这些观察结果是不可重现的。在一起,这些发现表明,在PMA存在下,自发性神经传递增加归因于RRP释放的囊泡,而不是PMA对自发性回收池的影响。因此,佛波酯选择性地调节囊泡的活性依赖性池,表明佛波酯靶向的准备融合的囊泡的引发机制对于自发和诱发的融合形式是不同的。

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