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Stochastic Responses May Allow Genetically Diverse Cell Populations to Optimize Performance with Simpler Signaling Networks

机译:随机响应可能允许遗传上不同的小区群体通过更简单的信令网络优化性能

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摘要

Two theories have emerged for the role that stochasticity plays in biological responses: first, that it degrades biological responses, so the performance of biological signaling machinery could be improved by increasing molecular copy numbers of key proteins; second, that it enhances biological performance, by enabling diversification of population-level responses. Using T cell biology as an example, we demonstrate that these roles for stochastic responses are not sufficient to understand experimental observations of stochastic response in complex biological systems that utilize environmental and genetic diversity to make cooperative responses. We propose a new role for stochastic responses in biology: they enable populations to make complex responses with simpler biochemical signaling machinery than would be required in the absence of stochasticity. Thus, the evolution of stochastic responses may be linked to the evolvability of different signaling machineries.
机译:关于随机性在生物反应中所起的作用,出现了两种理论:第一,它降低了生物反应,因此,可以通过增加关键蛋白的分子拷贝数来改善生物信号传导机制的性能。第二,它通过实现人口反应的多样化来提高生物性能。以T细胞生物学为例,我们证明了随机反应的这些作用不足以理解利用环境和遗传多样性做出协同反应的复杂生物系统中随机反应的实验观察。我们提出了生物学中随机反应的新作用:与没有随机性的情况相比,它们使人群能够使用更简单的生化信号传导机制做出复杂的反应。因此,随机响应的发展可能与不同信号机制的发展有关。

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