Haberichter T, Marhl M, Heinrich R
Humboldt University Berlin, Institute of Biology, Theoretical Biophysics, Germany.
Biophys Chem. 2001 Mar 15;90(1):17-30. doi: 10.1016/s0301-4622(01)00127-2.
We have analyzed various types of complex calcium oscillations. The oscillations are explained with a model based on calcium-induced calcium release (CICR). In addition to the endoplasmic reticulum as the main intracellular Ca2+ store, mitochondrial and cytosolic Ca2+ binding proteins are also taken into account. This model was previously proposed for the study of the physiological role of mitochondria and the cytosolic proteins in gene rating complex Ca2+ oscillations [1]. Here, we investigated the occurrence of different types of Ca2+ oscillations obtained by the model, i.e. simple oscillations, bursting, and chaos. In a bifurcation diagram, we have shown that all these various modes of oscillatory behavior are obtained by a change of only one model parameter, which corresponds to the physiological variability of an agonist. Bursting oscillations were studied in more detail because they express birhythmicity, trirhythmicity and chaotic behavior. Two different routes to chaos are observed in the model: in addition to the usual period doubling cascade, we also show intermittency. For the characterization of the chaotic behavior, we made use of return maps and Lyapunov exponents. The potential biological role of chaos in intracellular signaling is discussed.
我们分析了各种类型的复杂钙振荡。这些振荡可用基于钙诱导钙释放(CICR)的模型来解释。除了内质网作为主要的细胞内钙库外,线粒体和胞质钙结合蛋白也被纳入考虑。该模型先前被提出用于研究线粒体和胞质蛋白在产生复杂钙振荡中的生理作用[1]。在此,我们研究了该模型产生的不同类型钙振荡的发生情况,即简单振荡、爆发振荡和混沌振荡。在分岔图中,我们表明所有这些不同的振荡行为模式仅通过改变一个模型参数即可获得,该参数对应于激动剂的生理变异性。对爆发振荡进行了更详细的研究,因为它们表现出双节律性、三节律性和混沌行为。在该模型中观察到两种不同的通向混沌的途径:除了通常的倍周期级联外,我们还展示了间歇性。为了表征混沌行为,我们使用了返回映射和李雅普诺夫指数。讨论了混沌在细胞内信号传导中的潜在生物学作用。