Shuai J W, Huang Y D, Rüdiger S
Department of Physics and Institute of Theoretical Physics and Astrophysics, Xiamen University, Xiamen, Fujian 361005, China.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Apr;81(4 Pt 1):041904. doi: 10.1103/PhysRevE.81.041904. Epub 2010 Apr 6.
In many cell types, calcium ion channels on the endoplasmic reticulum membrane occur in a clustered distribution. The channels generate either localized puffs, each comprising channels of only one cluster, or global calcium waves. In this work we model the calcium system as a two-dimensional lattice of active elements distributed regularly in an otherwise passive space. We address an important feature of the puff-wave transition, which is the difference in lifetime of puffs at a few hundred milliseconds and long-lived global waves with periods of several seconds. We show that such a lifetime difference between puffs and waves can be understood with strongly reduced ordinary differential equations modified by a time-scale factor that takes into account the coupling strength of active and passive regions determined by the Ca2+ diffusion coefficient. Furthermore, we show that the point model can also describe very well the dependence of Ca2+ oscillation characteristics on the cluster-cluster distance in the case of large diffusivity.
在许多细胞类型中,内质网膜上的钙离子通道呈簇状分布。这些通道会产生局部的钙瞬变(puff),每个钙瞬变仅由一个簇的通道组成,或者产生全局钙波。在这项工作中,我们将钙系统建模为在其他部分为无源空间中规则分布的活性元素的二维晶格。我们研究了钙瞬变 - 波转变的一个重要特征,即寿命为几百毫秒的钙瞬变与周期为几秒的长寿命全局波之间的差异。我们表明,通过考虑由Ca2 +扩散系数决定的有源和无源区域的耦合强度的时间尺度因子修改的大幅简化的常微分方程,可以理解钙瞬变和波之间的这种寿命差异。此外,我们表明,在扩散率较大的情况下,点模型也能很好地描述Ca2 +振荡特性对簇 - 簇距离的依赖性。