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随机热力学中的涨落电流。II. 驱动蛋白模型中的能量转换与非平衡响应

Fluctuating currents in stochastic thermodynamics. II. Energy conversion and nonequilibrium response in kinesin models.

作者信息

Altaner Bernhard, Wachtel Artur, Vollmer Jürgen

机构信息

Department of Dynamics of Complex Fluids (DCF), Max Planck Institute for Dynamics and Self-Organization (MPI DS), Am Fassberg 17, 37077 Göttingen, Germany.

Institute for Nonlinear Dynamics, Faculty of Physics, Georg-August University Göttingen, 37077 Göttingen, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Oct;92(4):042133. doi: 10.1103/PhysRevE.92.042133. Epub 2015 Oct 14.

Abstract

Unlike macroscopic engines, the molecular machinery of living cells is strongly affected by fluctuations. Stochastic thermodynamics uses Markovian jump processes to model the random transitions between the chemical and configurational states of these biological macromolecules. A recently developed theoretical framework [A. Wachtel, J. Vollmer, and B. Altaner, Phys. Rev. E 92, 042132 (2015)] provides a simple algorithm for the determination of macroscopic currents and correlation integrals of arbitrary fluctuating currents. Here we use it to discuss energy conversion and nonequilibrium response in different models for the molecular motor kinesin. Methodologically, our results demonstrate the effectiveness of the algorithm in dealing with parameter-dependent stochastic models. For the concrete biophysical problem our results reveal two interesting features in experimentally accessible parameter regions: the validity of a nonequilibrium Green-Kubo relation at mechanical stalling as well as a negative differential mobility for superstalling forces.

摘要

与宏观发动机不同,活细胞的分子机制受到涨落的强烈影响。随机热力学使用马尔可夫跳跃过程来模拟这些生物大分子的化学态和构型态之间的随机转变。最近发展的一个理论框架[A. 瓦赫特尔、J. 福尔默和B. 阿尔塔纳,《物理评论E》92, 042132 (2015)]提供了一种简单算法,用于确定任意涨落电流的宏观电流和关联积分。在此我们用它来讨论分子马达驱动蛋白不同模型中的能量转换和非平衡响应。在方法上,我们的结果证明了该算法在处理参数依赖的随机模型方面的有效性。对于具体的生物物理问题,我们的结果在实验可及的参数区域揭示了两个有趣的特征:在机械失速时非平衡格林 - 库博关系成立,以及对于超失速力存在负微分迁移率。

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