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Purely stochastic binary decisions in cell signaling models without underlying deterministic bistabilities

机译:细胞信号模型中的纯随机二元决策没有潜在的确定性双稳态

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摘要

Detection of different extracellular stimuli leading to functionally distinct outcomes is ubiquitous in cell biology, and is often mediated by differential regulation of positive and negative feedback loops that are a part of the signaling network. In some instances, these cellular responses are stimulated by small numbers of molecules, and so stochastic effects could be important. Therefore, we studied the influence of stochastic fluctuations on a simple signaling model with dueling positive and negative feedback loops. The class of models we have studied is characterized by single deterministic steady states for all parameter values, but the stochastic response is bimodal; a behavior that is distinctly different from models studied in the context of gene regulation. For example, when positive and negative regulation is roughly balanced, a unique deterministic steady state with an intermediate value for the amount of a downstream signaling product is found. However, for small numbers of signaling molecules, stochastic effects result in a bimodal distribution for this quantity, with neither mode corresponding to the deterministic solution; i.e., cells are in “on” or “off” states, not in some intermediate state. For a large number of molecules, the stochastic solution converges to the mean-field result. When fluctuations are important, we find that signal output scales with control parameters “anomalously” compared with mean-field predictions. The necessary and sufficient conditions for the phenomenon we report are quite common. So, our findings are expected to be of broad relevance, and suggest that stochastic effects can enable binary cellular decisions.
机译:在细胞生物学中,导致功能上不同的结果的不同细胞外刺激的检测是普遍存在的,并且通常由正向和负向反馈回路的差异调节来介导,正向和负向反馈回路是信号网络的一部分。在某些情况下,这些细胞反应会受到少量分子的刺激,因此随机效应可能很重要。因此,我们研究了随机波动对具有正负反馈回路的简单信号模型的影响。我们研究的模型类别的特征是所有参数值都具有单一确定性稳态,但是随机响应是双峰的。这种行为与在基因调控背景下研究的模型明显不同。例如,当正调节和负调节大致平衡时,会发现一个唯一的确定性稳态,其下游信号产物的量为中间值。但是,对于少量的信号分子,随机效应会导致该数量的双峰分布,而两种模式都不对应于确定性解;即,单元处于“开”或“关”状态,而不处于某些中间状态。对于大量分子,随机解收敛到平均场结果。当波动很重要时,我们发现与平均场预测相比,控制参数“异常地”缩放了信号输出。我们报告的现象的必要和充分条件非常普遍。因此,我们的发现有望具有广泛的相关性,并表明随机效应可以实现二元细胞决策。

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