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哺乳动物大脑中快速突触处神经传递的时间安排。

Timing of neurotransmission at fast synapses in the mammalian brain.

作者信息

Sabatini B L, Regehr W G

机构信息

Department of Neurobiology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Nature. 1996 Nov 14;384(6605):170-2. doi: 10.1038/384170a0.

Abstract

Understanding the factors controlling synaptic delays has broad implications. On a systems level, the speed of synaptic transmission limits the communication rate between neurons and strongly influences local circuit dynamics. On a molecular level, the delay from presynaptic calcium entry to postsynaptic responses constrains the molecular mechanism of vesicle fusion. Previously it has not been possible to elucidate the determinants of synaptic delays in the mammalian central nervous system, where presynaptic terminals are small and difficult to study. We have developed a new approach to study timing at rat cerebellar synapses: we used optical techniques to measure voltage and calcium current simultaneously from presynaptic boutons while monitoring postsynaptic currents electrically. Here we report that the classic view that vesicle release is driven by calcium entry during action-potential repolarization holds for these synapses at room temperature, but not at physiological temperatures, where postsynaptic responses commence just 150 micros after the start of the presynaptic action potential. This brisk communication is a consequence of rapid calcium-channel kinetics, which allow significant calcium entry during the upstroke of the presynaptic action potential, and extremely fast calcium-driven vesicle fusion, which lags behind calcium influx by 60 micros.

摘要

了解控制突触延迟的因素具有广泛的意义。在系统层面,突触传递的速度限制了神经元之间的通信速率,并强烈影响局部回路动力学。在分子层面,从突触前钙内流到突触后反应的延迟限制了囊泡融合的分子机制。以前,在哺乳动物中枢神经系统中,由于突触前终末小且难以研究,因此无法阐明突触延迟的决定因素。我们开发了一种新方法来研究大鼠小脑突触的时间:我们使用光学技术同时从突触前小体测量电压和钙电流,同时用电学方法监测突触后电流。我们在此报告,在室温下,囊泡释放由动作电位复极化期间的钙内流驱动这一经典观点适用于这些突触,但在生理温度下则不然,在生理温度下,突触后反应在突触前动作电位开始后仅150微秒就开始。这种快速通信是快速钙通道动力学的结果,快速钙通道动力学允许在突触前动作电位的上升期间有大量钙内流,以及极快的钙驱动囊泡融合,其比钙内流滞后60微秒。

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