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Simplification and analysis of models of calcium dynamics based on IP3-sensitive calcium channel kinetics.

机译:基于IP3敏感的钙通道动力学的钙动力学模型的简化和分析。

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摘要

We study the models for calcium (Ca) dynamics developed in earlier studies, in each of which the key component is the kinetics of intracellular inositol-1,4,5-trisphosphate-sensitive Ca channels. After rapidly equilibrating steps are eliminated, the channel kinetics in these models are represented by a single differential equation that is linear in the state of the channel. In the reduced kinetic model, the graph of the steady-state fraction of conducting channels as a function of log10(Ca) is a bell-shaped curve. Dynamically, a step increase in inositol-1,4,5-trisphosphate induces an incremental increase in the fraction of conducting channels, whereas a step increase in Ca can either potentiate or inhibit channel activation, depending on the Ca level before and after the increase. The relationships among these models are discussed, and experimental tests to distinguish between them are given. Under certain conditions the models for intracellular calcium dynamics are reduced to the singular perturbed form epsilon dx/d tau = f(x, y, p), dy/d tau = g(x, y, p). Phase-plane analysis is applied to a generic form of these simplified models to show how different types of Ca response, such as excitability, oscillations, and a sustained elevation of Ca, can arise. The generic model can also be used to study frequency encoding of hormonal stimuli, to determine the conditions for stable traveling Ca waves, and to understand the effect of channel properties on the wave speed.
机译:我们研究了早期研究中开发的钙(Ca)动力学模型,每个模型中的关键成分是细胞内肌醇-1,4,5-三磷酸酯敏感的Ca通道的动力学。在消除快速平衡步骤之后,这些模型中的通道动力学由一个在通道状态下呈线性的微分方程表示。在简化的动力学模型中,导电通道的稳态分数随log10(Ca)的变化曲线为钟形曲线。从动力学上讲,肌醇-1,4,5-三磷酸酯的逐步增加诱导传导通道的分数增加,而Ca的逐步增加可以增强或抑制通道激活,具体取决于增加之前和之后的Ca水平。讨论了这些模型之间的关系,并给出了区分它们的实验测试。在某些条件下,细胞内钙动力学模型被简化为εdx / d tau = f(x,y,p),dy / d tau = g(x,y,p)的奇异摄动形式。相平面分析被应用到这些简化模型的通用形式,以显示如何产生不同类型的Ca响应,例如兴奋性,振荡和Ca持续升高。通用模型还可以用于研究激素刺激的频率编码,确定稳定的行进Ca波的条件以及了解通道特性对波速的影响。

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