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Physical limits to biochemical signaling

机译:生化信号传导的物理极限

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摘要

Many crucial biological processes operate with surprisingly small numbers of molecules, and there is renewed interest in analyzing the impact of noise associated with these small numbers. Twenty-five years ago, Berg and Purcell showed that bacterial chemotaxis, where a single-celled organism must respond to small changes in concentration of chemicals outside the cell, is limited directly by molecule counting noise and that aspects of the bacteria's behavioral and computational strategies must be chosen to minimize the effects of this noise. Here, we revisit and generalize their arguments to estimate the physical limits to signaling processes within the cell and argue that recent experiments are consistent with performance approaching these limits.
机译:许多关键的生物学过程都以极少的分子数量起作用,因此人们对分析与这些少量分子相关的噪声的影响有了新的兴趣。 25年前,Berg和Purcell表明,细菌趋化性(单细胞生物必须对细胞外化学物质浓度的微小变化做出响应)直接受到分子计数噪声的限制,并且细菌的行为和计算策略也受到限制必须选择以最小化这种噪声的影响。在这里,我们重新审视并推广他们的论据,以估计细胞内信号传导过程的物理极限,并认为最近的实验与接近这些极限的性能是一致的。

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