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Amplified Biochemical Oscillations in Cellular Systems

机译:细胞系统中的生化振荡放大

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摘要

We describe a mechanism for pronounced biochemical oscillations, relevant to microscopic systems, such as the intracellular environment. This mechanism operates for reaction schemes which, when modeled using deterministic rate equations, fail to exhibit oscillations for any values of rate constants. The mechanism relies on amplification of the underlying stochasticity of reaction kinetics within a narrow window of frequencies. This amplification means that fluctuations have a dominant effect, even though the number of molecules in the system is relatively large. The mechanism is quantitatively studied within simple models of self-regulatory gene expression, and glycolytic oscillations.
机译:我们描述了一种明显的生化振荡的机制,与微观系统(例如细胞内环境)有关。该机制适用于反应方案,当使用确定性速率方程进行建模时,对于任何速率常数值都无法表现出振荡。该机制依赖于在狭窄的频率范围内放大反应动力学的潜在随机性。即使系统中的分子数量相对较大,这种放大也意味着波动具有主要作用。在自我调节基因表达和糖酵解振荡的简单模型中对该机制进行了定量研究。

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