The role of water in protein-DNA recognition.

B Jayaram, Tarun Jain
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引用次数: 188

Abstract

Is it by design or by default that water molecules are observed at the interfaces of some protein-DNA complexes? Both experimental and theoretical studies on the thermodynamics of protein-DNA binding overwhelmingly support the extended hydrophobic view that water release from interfaces favors binding. Structural and energy analyses indicate that the waters that remain at the interfaces of protein-DNA complexes ensure liquid-state packing densities, screen the electrostatic repulsions between like charges (which seems to be by design), and in a few cases act as linkers between complementary charges on the biomolecules (which may well be by default). This review presents a survey of the current literature on water in protein-DNA complexes and a critique of various interpretations of the data in the context of the role of water in protein-DNA binding and principles of protein-DNA recognition in general.

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水在蛋白质- dna识别中的作用。
在某些蛋白质- dna复合物的界面上观察到水分子,是故意的还是默认的?关于蛋白质- dna结合热力学的实验和理论研究都压倒性地支持扩展的疏水观点,即水从界面释放有利于结合。结构和能量分析表明,留在蛋白质- dna复合物界面上的水确保了液体状态的堆积密度,屏蔽了类似电荷之间的静电斥力(这似乎是故意的),并且在少数情况下充当生物分子上互补电荷之间的连接器(这很可能是默认的)。本综述综述了目前关于蛋白质- dna复合物中水的文献,并对水在蛋白质- dna结合中的作用和蛋白质- dna识别原理的背景下对数据的各种解释进行了批评。
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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