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钙动力学建模中的膜相关复合物。

Membrane associated complexes in calcium dynamics modelling.

机构信息

Institute of Fundamental Technological Research, Polish Academy of Sciences, Warsaw, Poland.

出版信息

Phys Biol. 2013 Jun;10(3):035004. doi: 10.1088/1478-3975/10/3/035004. Epub 2013 Jun 4.

Abstract

Mitochondria not only govern energy production, but are also involved in crucial cellular signalling processes. They are one of the most important organelles determining the Ca(2+) regulatory pathway in the cell. Several mathematical models explaining these mechanisms were constructed, but only few of them describe interplay between calcium concentrations in endoplasmic reticulum (ER), cytoplasm and mitochondria. Experiments measuring calcium concentrations in mitochondria and ER suggested the existence of cytosolic microdomains with locally elevated calcium concentration in the nearest vicinity of the outer mitochondrial membrane. These intermediate physical connections between ER and mitochondria are called MAM (mitochondria-associated ER membrane) complexes. We propose a model with a direct calcium flow from ER to mitochondria, which may be justified by the existence of MAMs, and perform detailed numerical analysis of the effect of this flow on the type and shape of calcium oscillations. The model is partially based on the Marhl et al model. We have numerically found that the stable oscillations exist for a considerable set of parameter values. However, for some parameter sets the oscillations disappear and the trajectories of the model tend to a steady state with very high calcium level in mitochondria. This can be interpreted as an early step in an apoptotic pathway.

摘要

线粒体不仅控制着能量的产生,还参与了至关重要的细胞信号转导过程。它们是决定细胞内 Ca(2+)调节途径的最重要的细胞器之一。已经构建了几个解释这些机制的数学模型,但只有少数模型描述了内质网 (ER)、细胞质和线粒体之间的钙离子浓度相互作用。测量线粒体和 ER 中钙离子浓度的实验表明,在外膜附近的细胞质中存在局部钙离子浓度升高的微区。这些 ER 和线粒体之间的中间物理连接称为 MAM(线粒体相关 ER 膜)复合物。我们提出了一个模型,其中 ER 中的钙离子可以直接流向线粒体,这可能是由 MAMs 的存在所证明的,并对这种流动对钙振荡的类型和形状的影响进行了详细的数值分析。该模型部分基于 Marhl 等人的模型。我们已经通过数值方法发现,在相当大的参数值范围内,稳定的振荡是存在的。然而,对于某些参数集,振荡会消失,模型的轨迹会趋向于线粒体中钙离子水平非常高的稳定状态。这可以解释为凋亡途径的早期步骤。

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