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信号诱导的Ca2+振荡:基于Ca(2+)诱导Ca2+释放的模型特性

Signal-induced Ca2+ oscillations: properties of a model based on Ca(2+)-induced Ca2+ release.

作者信息

Dupont G, Berridge M J, Goldbeter A

机构信息

Faculté des Sciences, Université Libre de Bruxelles, Belgium.

出版信息

Cell Calcium. 1991 Feb-Mar;12(2-3):73-85. doi: 10.1016/0143-4160(91)90010-c.

Abstract

We consider a simple, minimal model for signal-induced Ca2+ oscillations based on Ca(2+)-induced Ca2+ release. The model takes into account the existence of two pools of intracellular Ca2+, namely, one sensitive to inositol 1,4,5 trisphosphate (InsP3) whose synthesis is elicited by the stimulus, and one insensitive to InsP3. The discharge of the latter pool into the cytosol is activated by cytosolic Ca2+. Oscillations in cytosolic Ca2+ arise in this model either spontaneously or in an appropriate range of external stimulation; these oscillations do not require the concomitant, periodic variation of InsP3. The following properties of the model are reviewed and compared with experimental observations: (a) Control of the frequency of Ca2+ oscillations by the external stimulus or extracellular Ca2+; (b) correlation of latency with period of Ca2+ oscillations obtained at different levels of stimulation; (c) effect of a transient increase in InsP3; (d) phase shift and transient suppression of Ca2+ oscillations by Ca2+ pulses, and (e) propagation of Ca2+ waves. It is shown that on all these counts the model provides a simple, unified explanation for a number of experimental observations in a variety of cell types. The model based on Ca(2+)-induced Ca2+ release can be extended to incorporate variations in the level of InsP3 as well as desensitization of the InsP3 receptor; besides accounting for the phenomena described by the minimal model, the extended model might also account for the occurrence of complex Ca2+ oscillations.

摘要

我们基于钙诱导的钙释放,考虑了一个简单的、最小化的信号诱导钙振荡模型。该模型考虑了细胞内存在的两个钙池,即一个对由刺激引发合成的肌醇1,4,5 - 三磷酸(InsP3)敏感,另一个对InsP3不敏感。后者钙池向细胞质的释放由细胞质中的钙激活。在这个模型中,细胞质钙振荡要么自发产生,要么在适当的外部刺激范围内产生;这些振荡不需要InsP3伴随的周期性变化。本文回顾了该模型的以下特性,并与实验观察结果进行了比较:(a)外部刺激或细胞外钙对钙振荡频率的控制;(b)在不同刺激水平下获得的钙振荡潜伏期与周期的相关性;(c)InsP3瞬时增加的影响;(d)钙脉冲对钙振荡的相移和瞬时抑制,以及(e)钙波的传播。结果表明,在所有这些方面,该模型为多种细胞类型中的一些实验观察结果提供了一个简单、统一的解释。基于钙诱导钙释放的模型可以扩展,以纳入InsP3水平的变化以及InsP3受体的脱敏;除了解释最小模型所描述的现象外,扩展模型还可能解释复杂钙振荡的发生。

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