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Few crucial links assure checkpoint efficiency in the yeast cell-cycle network

机译:很少有关键环节可以确保酵母细胞周期网络中检查点的效率

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摘要

Motivation: The ability of cells to complete mitosis with high fidelity relies on elaborate checkpoint mechanisms. We study S- and M-phase checkpoint responses in silico in the budding yeast with a stochastic dynamical model for the cell-cycle. We aim to provide an unbiased functional classification of network interactions that reflect the contribution of each link to checkpoint efficiency in the presence of cellular fluctuations. Results: We developed an algorithm BNetDyn to compute stochastic dynamical trajectories for an input gene network and its structural perturbations. User specified output measures like the mutual information between trigger and output nodes are then evaluated on the stationary state of the Markov process. Systematic perturbations of the yeast cell-cycle model by Li et al. classify each link according to its effect on checkpoint efficiencies and stabilities of the main cell-cycle phases. This points to the crosstalk in the cascades downstream of the SBF/MBF transcription activator complexes as determinant for checkpoint optimality; a finding that consistently reflects recent experiments. Finally our stochastic analysis emphasizes how dynamical stability in the yeast cell-cycle network crucially relies on backward inhibitory circuits next to forward induction. Availability: C++ source code and network models can be downloaded at Contact: felix.naef@isrec.ch Supplementary information: Supplementary data are available at Bioinformatics online
机译:动机:细胞以高保真度完成有丝分裂的能力取决于复杂的检查点机制。我们用细胞周期的随机动力学模型研究发芽酵母中硅的S和M期检查点响应。我们旨在为网络交互提供无偏功能分类,该分类反映了在存在细胞波动的情况下每个链接对检查点效率的贡献。结果:我们开发了一种算法BNetDyn来计算输入基因网络及其结构扰动的随机动态轨迹。然后,根据马尔可夫过程的固定状态评估用户指定的输出量度,例如触发节点和输出节点之间的相互信息。 Li等人对酵母细胞周期模型的系统扰动。根据每个链接对检查点效率和主要细胞周期阶段的稳定性进行分类。这表明SBF / MBF转录激活剂复合物下游的级联中的串扰是检查点最佳性的决定因素。一贯反映近期实验的发现。最后,我们的随机分析强调了酵母细胞周期网络中的动力学稳定性如何至关重要地依赖于正向诱导旁边的反向抑制回路。可用性:可以从以下地址下载C ++源代码和网络模型:联系人:felix.naef@isrec.ch补充信息:补充数据可从在线生物信息学获得

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