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Information transfer through a signaling module with feedback: A perturbative approach

机译:通过带有反馈的信令模块进行信息传递:一种微扰方法

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摘要

Signal transduction in biological cells is effected by signaling pathways that typically include multiple feedback loops. Here we analyze information transfer through a prototypical signaling module with biochemical feedback. The module switches stochastically between an inactive and active state; the input to the module governs the activation rate while the output (i.e., the product concentration) perturbs the inactivation rate. Using a novel perturbative approach, we compute the rate with which information about the input is gained from observation of the output. We obtain an explicit analytical result valid to first order in feedback strength and to second order in the strength of input. The total information gained during an extended time interval is found to depend on the feedback strength only through the total number of activation/inactivation events. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:生物细胞中的信号转导受到通常包括多个反馈环的信号传导途径的影响。在这里,我们通过具有生化反馈的原型信号模块来分析信息传递。模块在非活动状态和活动状态之间随机切换;模块的输入控制激活速率,而输出(即产品浓度)则扰乱了激活速率。使用一种新颖的摄动方法,我们计算从输出的观察获得有关输入的信息的速率。我们得到一个明确的分析结果,该结果对反馈强度有效,对一级有效,对输入强度有效。发现在延长的时间间隔内获得的总信息仅取决于激活/失活事件的总数,取决于反馈强度。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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