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有证据表明,金鱼视网膜双极细胞的胞吐作用是由通过多个钙通道的钙内流驱动的。

Evidence that exocytosis is driven by calcium entry through multiple calcium channels in goldfish retinal bipolar cells.

作者信息

Coggins Michael, Zenisek David

机构信息

Yale University School of Medicine, Department of Cellular and Molecular Physiology, 333 Cedar Street, New Haven, CT 06520, USA.

出版信息

J Neurophysiol. 2009 May;101(5):2601-19. doi: 10.1152/jn.90881.2008. Epub 2009 Feb 25.

Abstract

Ribbon-containing neurons represent a subset of neural cells that undergo graded membrane depolarizations rather than Na(+)-channel evoked action potentials. Bipolar cells of the retina are one type of ribbon-containing neuron and extensive research has demonstrated kinetically distinct pools of vesicles that are released and replenished in a calcium-dependent manner. In this study, we look at the properties of the fastest pool of releasable vesicles in these cells, often referred to as the immediately releasable pool (IRP), to investigate the relationships between vesicle release and calcium channels in these terminals. Using whole cell capacitance measurements, we monitored exocytosis in response to different magnitude and duration depolarizations, with emphasis on physiologically relevant step depolarizations. We find that release rate of the IRP increases superlinearly with membrane potential and that the IRP is sensitive to elevated EGTA concentrations in a membrane-potential-dependent manner across the physiological range of membrane potentials. Our results are best explained by a model in which multiple Ca(2+) channels act in concert to drive exocytosis of a single synaptic vesicle. Pooling calcium entering through many calcium channels may be important for reducing stochastic noise in neurotransmitter release associated with the opening of individual calcium channels.

摘要

含带状突触小体的神经元是一类神经细胞的子集,这类神经细胞会经历分级膜去极化,而非由钠离子通道引发动作电位。视网膜双极细胞是含带状突触小体神经元的一种类型,广泛的研究已经证明存在动力学上不同的囊泡池,这些囊泡池以钙依赖的方式释放和补充。在本研究中,我们研究了这些细胞中可释放囊泡最快的池(通常称为立即可释放池,IRP)的特性,以研究这些终末中囊泡释放与钙通道之间的关系。我们使用全细胞电容测量技术,监测了不同幅度和持续时间去极化刺激下的胞吐作用,重点关注生理相关的阶跃去极化。我们发现,IRP的释放速率随膜电位呈超线性增加,并且在生理膜电位范围内,IRP对膜电位依赖性升高的EGTA浓度敏感。我们的结果最好由一个模型来解释,即多个钙离子通道协同作用驱动单个突触囊泡的胞吐作用。汇集通过许多钙通道进入的钙离子对于减少与单个钙通道开放相关的神经递质释放中的随机噪声可能很重要。

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