Mackenzie P J, Umemiya M, Murphy T H
Kinsmen Laboratory, Department of Psychiatry, University of British Columbia, Vancouver, Canada.
Neuron. 1996 Apr;16(4):783-95. doi: 10.1016/s0896-6273(00)80098-7.
A combination of Ca2+ imaging and current clamp recording in cultured cortical neurons was used to evaluate the reliability of coupling between the action potential and rises in Ca2+ at distal release sites as a possible source of variability in CNS synaptic transmission. Local domains of enhanced Ca2+ influx were observed at varicosities on axon collaterals. Functional assay of vesicle turnover using FM1-43 and parallel electron microscopy confirmed that these varicosities were release sites. Single action potentials reliably ( > 95% of the time) resulted in a presynaptic Ca2+ transient at all presumed release sites including those on distal collaterals. Variability in the amplitude of presynaptic Ca2+ transients at individual boutons was estimated to be on average less than 20%. We conclude that the coupling of somatic action potentials to distal release sites is generally a reliable process, although nonlinearity in the relationship between Ca2+ influx and neurotransmitter release may amplify the effects of relatively small fluctuations in Ca2+ influx.
在培养的皮质神经元中,结合使用钙离子成像和电流钳记录,以评估动作电位与远端释放位点处钙离子浓度升高之间偶联的可靠性,这可能是中枢神经系统突触传递变异性的一个来源。在轴突侧支的膨体处观察到钙离子内流增强的局部区域。使用FM1-43对囊泡周转进行功能测定并结合平行电子显微镜检查证实这些膨体是释放位点。单个动作电位在所有假定的释放位点(包括远端侧支上的位点)均可靠地(>95%的时间)导致突触前钙离子瞬变。估计单个突触小体处突触前钙离子瞬变幅度的变异性平均小于20%。我们得出结论,尽管钙离子内流与神经递质释放之间关系的非线性可能会放大钙离子内流相对较小波动的影响,但体细胞动作电位与远端释放位点的偶联通常是一个可靠的过程。