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首页> 外文期刊>Journal of physics, A. Mathematical and theoretical >Genetic noise mechanism for power-law switching in bacterial flagellar motors
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Genetic noise mechanism for power-law switching in bacterial flagellar motors

机译:细菌鞭毛电动机电力法切换的遗传噪声机制

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Switching of the direction of flagella rotations is the key control mechanism governing the chemotactic activity of E. coli and many other bacteria. Power-law distributions of switching times are most peculiar because their emergence cannot be deduced from simple thermodynamic arguments. Recently, it was suggested that by adding finite-time correlations into Gaussian fluctuations regulating the energy height of the barrier between the two rotation states, it is possible to generate switching statistics with an intermediate power-law asymptotics. By using a simple model of a regulatory pathway, we demonstrate that the required amount of correlated 'noise' can be produced by finite number fluctuations of reacting protein molecules, a condition common to the intracellular chemistry. The corresponding power-law exponent appears as a tunable characteristic controlled by parameters of the regulatory pathway network such as the equilibrium number of molecules, sensitivities, and the characteristic relaxation time.
机译:鞭毛旋转方向的切换是控制大肠杆菌和许多其他细菌的趋化活性的关键控制机制。电源法的切换时间分布最为特殊,因为它们的出现不能从简单的热力学争论推导出来。最近,建议通过将有限时间相关性添加到调节两个旋转状态之间的屏障的能量高度的高斯波动中,可以通过中间功率法渐近的分解统计。通过使用一种简单的调节途径模型,我们证明了所需的相关性“噪声”可以通过反应蛋白质分子的有限数波动,细胞内化学常见的条件产生。相应的幂律指数表现为由调节途径网络的参数控制的可调特性,例如分子,敏感度和特征松弛时间的平衡数。

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