Nonequilibrium Transport Induced by Biological Nanomachines

Yuto Hosaka, S. Komura
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引用次数: 5

Abstract

Biological nanomachines are nanometer-size macromolecular complexes that catalyze chemical reactions in the presence of substrate molecules. The catalytic functions carried out by such nanomachines in the cytoplasm, and biological membranes are essential for cellular metabolism and homeostasis. During catalytic reactions, enzymes undergo conformational changes induced by substrate binding and product release. In recent years, these conformational dynamics have been considered to account for the nonequilibrium transport phenomena such as diffusion enhancement, chemotaxis, and substantial change in rheological properties, which are observed in biological systems. In this paper, we shall give an overview of the recent theoretical and experimental investigations that deal with nonequilibrium transport phenomena induced by biological nanomachines such as enzymes or proteins.
生物纳米机器诱导的非平衡输运
生物纳米机器是纳米大小的大分子复合物,在底物分子存在的情况下催化化学反应。这些纳米机器在细胞质和生物膜中发挥的催化功能对细胞代谢和稳态至关重要。在催化反应中,酶通过底物结合和产物释放引起构象变化。近年来,这些构象动力学被认为可以解释生物系统中观察到的非平衡输运现象,如扩散增强、趋化性和流变性质的实质性变化。在本文中,我们将概述最近的理论和实验研究,这些研究处理由酶或蛋白质等生物纳米机器引起的非平衡转运现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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