首页> 外文期刊>The Journal of Physiology >The role of endocytosis in regulating the strength of hippocampal synapses.
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The role of endocytosis in regulating the strength of hippocampal synapses.

机译:内吞作用在调节海马突触强度中的作用。

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The readily releasable pool of vesicles (RRP) varies in size during synaptic activity and is replenished by recruitment from the reserve pool as well as vesicle retrieval after fusion. To investigate which of these steps is rate limiting in supplying vesicles to the RRP, we measured the effects of changes in temperature in cultured hippocampal neurons, where higher average rates of release can be maintained as the temperature is increased. Using a pHluorin-based reporter of exocytosis and endocytosis (sypHy), we find that changes in temperature between 25 degrees C and 35 degrees C do not significantly alter the rate of recruitment from the reserve pool. In contrast, the time constant of endocytosis fell from approximately 17 s at 25 degrees C to approximately 10 s at 35 degrees C (Q(10) = 1.7), while the time constant of vesicle reacidification fell from approximately 5.5 s to approximately 1 s (Q(10) = 5.5). A kinetic model of the vesicle cycle constructed using measured parameters was found to describe variations in vesicle release rate observed during long trains of spikes as well as recovery from synaptic depression after bursts of activity. These results indicate that endocytosis operating with time constants of 10-15 s is the rate-limiting process determining replenishment of the RRP during long-term activity. A fast mode of vesicle retrieval could not be detected at any temperature, nor was it necessary to invoke such a mechanism to account for use-dependent changes in synaptic release probability.
机译:易释放的囊泡池(RRP)在突触活动期间大小会有所不同,并通过从储备池募集以及融合后的囊泡回收得到补充。为了研究这些步骤中的哪一个是限制向RRP提供囊泡的速率限制因素,我们测量了培养的海马神经元温度变化的影响,其中随着温度升高可以维持较高的平均释放速率。使用基于pHluorin的胞吐作用和胞吞作用(sypHy)的报告基因,我们发现25摄氏度至35摄氏度之间的温度变化不会显着改变储备池的募集率。相反,内吞作用的时间常数从25摄氏度时的约17 s降至35摄氏度时的约10 s(Q(10)= 1.7),而囊泡再酸化的时间常数从约5.5 s降至约1 s。 (Q(10)= 5.5)。发现使用测量的参数构造的囊泡周期的动力学模型描述了长时间的峰值运动期间观察到的囊泡释放速率的变化以及活动爆发后突触抑制的恢复。这些结果表明,以10-15 s的时间常数运行的胞吞作用是决定RRP在长期活动中是否补充的限速过程。在任何温度下都无法检测到快速的囊泡回收模式,也没有必要调用这种机制来解决突触释放概率中与使用有关的变化。

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