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蛙运动神经末梢局部去极化引发的递质释放:钙内流和去极化的作用。

Transmitter release triggered by a local depolarization in motor nerve terminals of the frog: role of calcium entry and of depolarization.

作者信息

Dudel J

出版信息

Neurosci Lett. 1983 Oct 31;41(1-2):133-8. doi: 10.1016/0304-3940(83)90235-5.

Abstract

Quantal synaptic currents (EPSCs) were elicited at neuromuscular junctions of frogs, applying current pulses through the recording current-clamp electrode. Facilitation of a test-EPSC by a preceding EPSC of variable amplitude was determined. This facilitation after a prepulse and release during the prepulse were found to have different dependences on depolarizing current amplitude. In addition, if intraterminal calcium [( Ca]i) was raised by a train of EPSCs, small depolarizations with little additional Ca entry elicited release which depended strongly on pulse amplitude. It is concluded that, in addition to [Ca]i, depolarization of the terminal directly controls quantal release. This depolarization dependence of release is shown to be the probable cause for termination of release after a large Ca entry.

摘要

通过记录电流钳电极施加电流脉冲,在青蛙的神经肌肉接头处诱发量子突触电流(EPSCs)。测定了不同幅度的前一个EPSC对测试EPSC的易化作用。发现预脉冲后的这种易化作用和预脉冲期间的释放对去极化电流幅度有不同的依赖性。此外,如果通过一串EPSCs提高终末内钙([Ca]i),少量额外钙内流引起的小去极化会引发释放,而这种释放强烈依赖于脉冲幅度。得出的结论是,除了[Ca]i之外,终末的去极化直接控制量子释放。释放的这种去极化依赖性被证明是大量钙内流后释放终止的可能原因。

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