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Kinetic Uncertainty Relations for the Control of Stochastic Reaction Networks

机译:随机反应网络控制的动力学不确定性关系

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摘要

Nonequilibrium stochastic reaction networks are commonly found in both biological and nonbiological systems, but have remained hard to analyze because small differences in rate functions or topology can change the dynamics drastically. Here, we conjecture exact quantitative inequalities that relate the extent of fluctuations in connected components, for various network topologies. Specifically, we find that regardless of how two components affect each other's production rates, it is impossible to suppress fluctuations below the uncontrolled equivalents for both components: one must increase its fluctuations for the other to be suppressed. For systems in which components control each other in ringlike structures, it appears that fluctuations can only be suppressed in one component if all other components instead increase fluctuations, compared to the case without control. Even the general N-component system-with arbitrary connections and parameters-must have at least one component with increased fluctuations to reduce fluctuations in others. In connected reaction networks it thus appears impossible to reduce the statistical uncertainty in all components, regardless of the control mechanisms or energy dissipation.
机译:非平衡随机反应网络通常在生物系统和非生物系统中都发现,但是由于速率函数或拓扑结构的细微差异会极大地改变动力学,因此仍然难以分析。在这里,我们推测对于各种网络拓扑结构,精确的量化不等式与连接的组件的波动程度有关。具体而言,我们发现,不管两个组件如何影响彼此的生产率,都无法将波动抑制在两个组件的不受控制的等效值之下:一个组件必须增加其波动才能抑制另一个组件。对于其中组件以环形结构相互控制的系统,与没有控制的情况相比,似乎只有所有其他组件都增加了波动,才可以抑制一个组件中的波动。甚至具有任意连接和参数的一般N组件系统也必须至少具有波动增加的一个组件,以减少其他组件的波动。因此,在相连的反应网络中,无论控制机制或能量耗散如何,似乎都不可能减少所有组件的统计不确定性。

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  • 来源
    《Physical review letters》 |2019年第10期|108101.1-108101.6|共6页
  • 作者单位

    Harvard Univ Dept Syst Biol 200 Longwood Ave Boston MA 02115 USA|Harvard Univ Dept Mol & Cellular Biol Cambridge MA 02138 USA;

    Univ Toronto Dept Chem & Phys Sci Mississauga ON L5L 1C6 Canada|Univ Toronto Dept Math 40 St George St Toronto ON M5S 2E4 Canada|Univ Toronto Dept Cell & Syst Biol 25 Harbord St Toronto ON M5S 3G5 Canada;

    Univ Cambridge Dept Engn Cambridge CB2 1PZ England;

    Harvard Univ Dept Syst Biol 200 Longwood Ave Boston MA 02115 USA;

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