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Enhanced diffusion, swelling, and slow reconfiguration of a single chain in non-Gaussian active bath

机译:在非高斯活性浴中的单链增强的扩散,肿胀和缓慢重新配置

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摘要

A prime example of a non-equilibrium or active environment is a biological cell. In order to understand in vivo functioning of biomolecules such as proteins and chromatins, a description beyond equilibrium is absolutely necessary. In this context, biomolecules have been modeled as Rouse chains in a Gaussian active bath. However, these non-equilibrium fluctuations in biological cells are non-Gaussian. This motivates us to take a Rouse chain subjected to a series of pulses of force with a finite duration, mimicking the run and tumble motion of a class of microorganisms. Thus by construction, this active force is non-Gaussian. Our analytical calculations show that the mean square displacement (MSD) of the center of mass grows faster and even shows superdiffusive behavior at higher activity. The MSD of a tagged monomer in an active bath also shows superdiffusion at an intermediate time unlike a monomer of a Rouse chain. In the case of a short chain length, reconfiguration is slower and the reconfiguration time of a chain with N monomers scales as N-sigma, with sigma approximate to 1.6 - 2. In addition, the chain swells. We compare this activity-induced swelling with that of a Rouse chain in a Gaussian active bath. In principle, our predictions can be verified by future single molecule experiments. Published under license by AIP Publishing.
机译:非平衡或活性环境的主要例子是生物细胞。为了理解生物分子的体内功能,例如蛋白质和染色蛋白,绝对必要的描述超越平衡。在这种情况下,Biomolecules已经在高斯活跃浴中被建模为rouse链。然而,生物细胞中的这些非平衡波动是非高斯的。这激励我们采取一个巨大的链,其具有有限持续时间的一系列力的力量,模仿一类微生物的润滑和滚动运动。因此,通过施工,这种主动力是非高斯。我们的分析计算表明,质量中心的均方位移(MSD)越来越快,甚至在更高的活动中表现出优质的行为。在活性浴中标记单体的MSD也显示出与唤醒链的单体的中间时间在中间时间。在短链长度的情况下,重新配置较慢,并且链中的链的重新配置为n单σ,σ近似为1.6-2。此外,链膨胀。我们将这种活动诱导的肿胀与高斯活跃浴中的rouse链进行了比较。原则上,我们的预测可以通过未来的单一分子实验来验证。通过AIP发布在许可证下发布。

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