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哺乳动物受精时的振荡性Ca2+动力学与细胞周期恢复:一种建模方法。

Oscillatory Ca2+ dynamics and cell cycle resumption at fertilization in mammals: a modelling approach.

作者信息

Dupont Geneviève, Heytens Elke, Leybaert Luc

机构信息

Unité de Chronobiologie Théorique, Université Libre de Bruxelles, Brussels, Belgium.

出版信息

Int J Dev Biol. 2010;54(4):655-65. doi: 10.1387/ijdb.082845gd.

Abstract

Fertilization in mammals is accompanied by Ca(2+) oscillations in the egg cytoplasm, leading to exit from meiosis and entry into the first embryonic cell cycle. The signal transduction pathway linking these Ca(2+) changes to cell-cycle related kinases has not yet been fully elucidated, but involves activation of calmodulin-dependent kinase II (CaMKII). Here, we develop a computational model to investigate the mechanism by which cell cycle resumption can be sensitive to the temporal pattern of Ca(2+) increases. Using a model for CaMKII activation that reproduces the frequency sensitivity of this kinase, simulations confirm that Ca(2+) spikes are accompanied by in phase variations in the level of CaMKII activity and suggest that in most mammalian species, Ca(2+) spikes are well suited to maximize CaMKII activation. The full model assumes that CaMKII brings about a decrease in the level of cyclinB-cdk1 by two pathways, only one of which is CSF-dependent. Parameters are selected to account for the experimental observations where mouse eggs were artificially activated by different Ca(2+) stimulatory protocols. The model is then used in the context of 'assisted oocyte activation (AOA)' to investigate why the best rates of successful activation are obtained when eggs are submitted to two applications of Ca(2+) ionophores.

摘要

哺乳动物受精过程伴随着卵细胞质中Ca(2+)振荡,导致减数分裂退出并进入第一个胚胎细胞周期。将这些Ca(2+)变化与细胞周期相关激酶联系起来的信号转导途径尚未完全阐明,但涉及钙调蛋白依赖性激酶II(CaMKII)的激活。在这里,我们开发了一个计算模型来研究细胞周期恢复对Ca(2+)增加的时间模式敏感的机制。使用一个再现该激酶频率敏感性的CaMKII激活模型,模拟证实Ca(2+)尖峰伴随着CaMKII活性水平的同相变化,并表明在大多数哺乳动物物种中,Ca(2+)尖峰非常适合使CaMKII激活最大化。完整模型假设CaMKII通过两条途径导致细胞周期蛋白B - cdk1水平降低,其中只有一条途径依赖细胞静止因子(CSF)。选择参数以解释通过不同Ca(2+)刺激方案人工激活小鼠卵的实验观察结果。然后在“辅助卵母细胞激活(AOA)”的背景下使用该模型来研究为什么当卵接受两次Ca(2+)离子载体处理时能获得最佳的成功激活率。

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