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Modeling-Based Investigation of the Effect of Noise in Cellular Systems

机译:基于模型的蜂窝系统噪声影响研究

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摘要

Noise is pervasive in cellular biology and inevitably affects the dynamics of cellular processes. Biological systems have developed regulatory mechanisms to ensure robustness with respect to noise or to take advantage of stochasticity. We review here, through a couple of selected examples, some insights on possible robustness factors and constructive roles of noise provided by computational modeling. In particular, we focus on (1) factors that likely contribute to the robustness of oscillatory processes such as the circadian clocks and the cell cycle, (2) how reliable coding/decoding of calcium-mediated signaling could be achieved in presence of noise and, in some cases, enhanced through stochastic resonance, and (3) how embryonic cell differentiation processes can exploit stochasticity to create heterogeneity in a population of identical cells.
机译:噪声在细胞生物学中无处不在,并不可避免地影响细胞过程的动力学。生物系统已经开发了调节机制,以确保抗噪声的鲁棒性或利用随机性。我们在此通过一些选定的示例回顾一些有关计算模型提供的可能的鲁棒性因素和噪声的建设性作用的见解。特别地,我们关注(1)可能有助于振荡过程鲁棒性的因素,例如生物钟和细胞周期;(2)在存在噪声和噪声的情况下如何实现钙介导信号的可靠编码/解码,在某些情况下,通过随机共振得以增强,以及(3)胚胎细胞分化过程如何利用随机性在同一细胞群中产生异质性。

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