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Statistics of cellular signal transduction as a race to the nucleus by multiple random walkers in compartment/phosphorylation space

机译:隔室/磷酸化空间中多个随机沃克作为细胞核竞争的细胞信号转导的统计

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摘要

Cellular signal transduction often involves a reaction network of phosphorylation and transport events arranged with a ladder topology. If we keep track of the location of the phosphate groups describing an abstract state space, a simple model of signal transduction involving enzymes can be mapped on to a problem of how multiple biased random walkers compete to reach their target in the nucleus yielding a signal. Here, the first passage time probability and the survival probability for multiple walkers can be used to characterize the response of the network. The statistics of the first passage through the network has an asymmetric distribution with a long tail arising from the hierarchical structure of the network. This distribution implies a significant difference between the mean and the most probable signal transduction time. The response patterns for various external inputs generated by our model agree with recent experiments. In addition, the model predicts that there is an optimal phosphorylation enzyme concentration for rapid signal transduction.
机译:细胞信号转导通常涉及以梯形拓扑排列的磷酸化和运输事件的反应网络。如果我们跟踪描述一个抽象状态空间的磷酸基团的位置,可以将涉及酶的信号转导的简单模型映射到一个问题,即多个有偏向的随机步行者如何竞争到达细胞核中的目标并产生信号。在此,多个步行者的第一次通过时间概率和生存概率可用于表征网络的响应。通过网络的第一次通道的统计信息具有不对称分布,并且由于网络的层次结构而导致尾巴较长。这种分布意味着平均值与最可能的信号转导时间之间存在显着差异。我们的模型生成的各种外部输入的响应模式与最近的实验一致。另外,该模型预测,存在用于快速信号转导的最佳磷酸化酶浓度。

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