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涨落驱动输运以及分子马达与泵的模型。

Fluctuation driven transport and models of molecular motors and pumps.

作者信息

Astumian R D, Derényi I

机构信息

Department of Surgery, University of Chicago, IL 60637, USA.

出版信息

Eur Biophys J. 1998;27(5):474-89. doi: 10.1007/s002490050158.

Abstract

Non-equilibrium fluctuations can drive vectorial transport along an anisotropic structure in an isothermal medium by biasing the effect of thermal noise (kBT). Mechanisms based on this principle are often called Brownian ratchets and have been invoked as a possible explanation for the operation of biomolecular motors and pumps. We discuss the thermodynamics and kinetics for the operation of microscopic ratchet motors under conditions relevant to biology, showing how energy provided by external fluctuations or a non-equilibrium chemical reaction can cause unidirectional motion or uphill pumping of a substance. Our analysis suggests that molecular pumps such as Na,K-ATPase and molecular motors such as kinesin and myosin may share a common underlying mechanism.

摘要

非平衡涨落可通过使热噪声(kBT)的效应产生偏差,从而驱动等温介质中沿各向异性结构的矢量输运。基于这一原理的机制通常被称为布朗棘轮,并被认为是生物分子马达和泵运行的一种可能解释。我们讨论了与生物学相关条件下微观棘轮马达运行的热力学和动力学,展示了外部涨落或非平衡化学反应提供的能量如何能够导致物质的单向运动或向上泵送。我们的分析表明,诸如钠钾ATP酶之类的分子泵以及诸如驱动蛋白和肌球蛋白之类的分子马达可能具有共同的潜在机制。

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