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微区中钙信号传导的宏观后果:一种首次通过时间方法。

Macroscopic consequences of calcium signaling in microdomains: a first-passage-time approach.

作者信息

Rovetti Robert, Das Kunal K, Garfinkel Alan, Shiferaw Yohannes

机构信息

Department of Biomathematics, University of California, Los Angeles, California 90095, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Nov;76(5 Pt 1):051920. doi: 10.1103/PhysRevE.76.051920. Epub 2007 Nov 29.

Abstract

Calcium (Ca) plays an important role in regulating various cellular processes. In a variety of cell types, Ca signaling occurs within microdomains where channels deliver localized pulses of Ca activating a nearby collection of Ca-sensitive receptors. The small number of channels involved ensures that the signaling process is stochastic. The aggregate response of several thousand of these microdomains yields a whole-cell response which dictates the cell behavior. Here, we study the statistical properties of a population of these microdomains in response to a trigger signal. We use a first-passage-time approach to show analytically how Ca release in the whole cell depends on properties of Ca channels within microdomains. Using these results we explain for the first time the underlying mechanism for the graded relationship between Ca influx and Ca release in cardiac cells.

摘要

钙(Ca)在调节各种细胞过程中起着重要作用。在多种细胞类型中,Ca信号传导发生在微区,通道在其中传递局部Ca脉冲,激活附近的一组Ca敏感受体。参与的通道数量较少确保了信号传导过程是随机的。数千个这些微区的总体反应产生全细胞反应,决定细胞行为。在这里,我们研究这些微区群体对触发信号反应的统计特性。我们使用首次通过时间方法来分析性地展示全细胞中的Ca释放如何依赖于微区内Ca通道的特性。利用这些结果,我们首次解释了心脏细胞中Ca内流与Ca释放之间分级关系的潜在机制。

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