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紧密耦合分子马达最大功率下效率的界限与相图

Bounds and phase diagram of efficiency at maximum power for tight-coupling molecular motors.

作者信息

Tu Z C

机构信息

Department of Physics, Beijing Normal University, 100875, Beijing, China.

出版信息

Eur Phys J E Soft Matter. 2013 Feb;36(2):11. doi: 10.1140/epje/i2013-13011-6. Epub 2013 Feb 12.

Abstract

The efficiency at maximum power (EMP) for tight-coupling molecular motors is investigated within the framework of irreversible thermodynamics. It is found that the EMP depends merely on the constitutive relation between the thermodynamic current and force. The motors are classified into four generic types (linear, superlinear, sublinear, and mixed types) according to the characteristics of the constitutive relation, and then the corresponding ranges of the EMP for these four types of molecular motors are obtained. The exact bounds of the EMP are derived and expressed as the explicit functions of the free energy released by the fuel in each motor step. A phase diagram is constructed which clearly shows how the region where the parameters (the load distribution factor and the free energy released by the fuel in each motor step) are located can determine whether the value of the EMP is larger or smaller than 1/2. This phase diagram reveals that motors using ATP as fuel under physiological conditions can work at maximum power with higher efficiency (> 1/2) for a small load distribution factor (< 0.1).

摘要

在不可逆热力学框架内研究了紧密耦合分子马达的最大功率效率(EMP)。结果发现,EMP仅取决于热力学流与力之间的本构关系。根据本构关系的特征,将马达分为四种通用类型(线性、超线性、亚线性和混合类型),然后得到这四种类型分子马达的EMP相应范围。推导出了EMP的精确界限,并将其表示为每个马达步骤中燃料释放的自由能的显式函数。构建了一个相图,清楚地展示了参数(负载分布因子和每个马达步骤中燃料释放的自由能)所在的区域如何决定EMP的值是大于还是小于1/2。该相图表明,在生理条件下以ATP为燃料的马达,对于较小的负载分布因子(<0.1),可以以更高的效率(>1/2)在最大功率下工作。

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