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电子传递金属蛋白还原热力学中的焓/熵补偿现象。

Enthalpy/entropy compensation phenomena in the reduction thermodynamics of electron transport metalloproteins.

作者信息

Battistuzzi Gianantonio, Borsari Marco, Di Rocco Giulia, Ranieri Antonio, Sola Marco

机构信息

Department of Chemistry, University of Modena and Reggio Emilia, via Campi 183, 41100, Modena, Italy.

出版信息

J Biol Inorg Chem. 2004 Jan;9(1):23-6. doi: 10.1007/s00775-003-0490-3. Epub 2003 Oct 30.

Abstract

Compensation phenomena between the enthalpy and entropy changes of the reduction reaction for all classes of electron transport metalloproteins, namely cytochromes, iron-sulfur, and blue copper proteins, are brought to light. This is the first comprehensive report on such effects for biological redox reactions. Following Grunwald's approach for the interpretation of H/ S compensation for solution reactions, it is concluded that reduction-induced solvent reorganization effects involving the hydration shell of the molecule dominate the reduction thermodynamics in these species, although they have no net effect on the E degrees values, owing to exact compensation. Thus the reduction potentials of these species are primarily determined by the selective enthalpic stabilization of one of the two oxidation states due to ligand binding interactions and electrostatics at the metal site and by the entropic effects of reduction-induced changes in protein flexibility.

摘要

各类电子传递金属蛋白,即细胞色素、铁硫蛋白和蓝铜蛋白,还原反应的焓变和熵变之间的补偿现象被揭示出来。这是关于生物氧化还原反应此类效应的首份综合报告。遵循格伦瓦尔德解释溶液反应中H/ S补偿的方法,得出的结论是,尽管还原诱导的涉及分子水合壳的溶剂重组效应由于精确补偿对E°值没有净影响,但在这些物种中主导还原热力学。因此,这些物种的还原电位主要由金属位点处配体结合相互作用和静电作用导致的两种氧化态之一的选择性焓稳定以及还原诱导的蛋白质柔韧性变化的熵效应决定。

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