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细胞色素c氧化酶中pK(a)值的密度泛函理论/静电计算

DFT/electrostatic calculations of pK(a) values in cytochrome c oxidase.

作者信息

Popović Dragan M, Quenneville Jason, Stuchebrukhov Alexei A

机构信息

Department of Chemistry, University of California, One Shields Avenue, Davis, California 95616, USA.

出版信息

J Phys Chem B. 2005 Mar 3;109(8):3616-26. doi: 10.1021/jp046535m.

Abstract

Using classical electrostatic calculations, earlier we examined the dependence of the protonation state of bovine cytochrome c oxidase (CcO) on its redox state. Based on these calculations, we have proposed a model of CcO proton pumping that involves His291, one of the Cu(B) histidine ligands, which was found to respond to redox changes of the enzyme Fe(a)(3)-Cu(B) catalytic center. In this work, we employ combined density functional and continuum electrostatic calculations to evaluate the pK(a)() values of His291 and Glu242, two key residues of the model. The pK(a) values are calculated for different redox states of the enzyme, and the influence of different factors on the pK(a)'s is analyzed in detail. The calculated pK(a)() values of Glu242 are between 9.4 and 12.0, depending on the redox state of the protein, which is in excellent agreement with recent experimental measurements. Assuming the reduced state of heme a(3), His291 of the oxidized Cu(B) center possesses a pK(a)() between 2.1 and 4.0, while His291 of the reduced Cu(B) center has a pK(a) above 17. The obtained results support the proposal that the His291 ligand of the Cu(B) center in CcO is a proton pump element.

摘要

利用经典静电计算方法,我们早些时候研究了牛细胞色素c氧化酶(CcO)的质子化状态对其氧化还原状态的依赖性。基于这些计算,我们提出了一种CcO质子泵浦模型,该模型涉及His291,它是Cu(B)的组氨酸配体之一,被发现对酶Fe(a)(3)-Cu(B)催化中心的氧化还原变化有响应。在这项工作中,我们采用密度泛函和连续介质静电计算相结合的方法来评估该模型中两个关键残基His291和Glu242的pK(a)值。针对酶的不同氧化还原状态计算pK(a)值,并详细分析不同因素对pK(a)值的影响。根据蛋白质的氧化还原状态,计算得到的Glu242的pK(a)值在9.4到12.0之间,这与最近的实验测量结果非常吻合。假设血红素a(3)处于还原状态,氧化态Cu(B)中心的His291的pK(a)在2.1到4.0之间,而还原态Cu(B)中心的His291的pK(a)高于17。所得结果支持了CcO中Cu(B)中心的His291配体是质子泵浦元件的提议。

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