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铜A位点几何结构和电子结构的扰动:影响离域的因素及其对电子转移的贡献。

Perturbations to the geometric and electronic structure of the CuA site: factors that influence delocalization and their contributions to electron transfer.

作者信息

Xie Xiangjin, Gorelsky Serge I, Sarangi Ritimukta, Garner Dewain K, Hwang Hee Jung, Hodgson Keith O, Hedman Britt, Lu Yi, Solomon Edward I

机构信息

Department of Chemistry, Stanford University, Stanford, California 94305, USA.

出版信息

J Am Chem Soc. 2008 Apr 16;130(15):5194-205. doi: 10.1021/ja7102668. Epub 2008 Mar 19.

DOI:10.1021/ja7102668
PMID:18348522
Abstract

Using a combination of electronic spectroscopies and DFT calculations, the effect of pH perturbation on the geometric and electronic structure of the CuA site has been defined. Descriptions are developed for high pH (pH = 7) and low pH (pH = 4) forms of CuA azurin and its H120A mutant which address the discrepancies concerning the extent of delocalization indicated by multifrequency EPR and ENDOR data (J. Am. Chem. Soc. 2005, 127, 7274; Biophys. J. 2002, 82, 2758). Our resonance Raman and MCD spectra demonstrate that the low pH and H120A mutant forms are essentially identical and are the perturbed forms of the completely delocalized high pH CuA site. However, in going from high pH to low pH, a seven-line hyperfine coupling pattern associated with complete delocalization of the electron (S = 1/2) over two Cu coppers (I(Cu) = 3/2) changes into a four-line pattern reflecting apparent localization. DFT calculations show that the unpaired electron is delocalized in the low pH form and reveal that its four-line hyperfine pattern results from the large EPR spectral effects of approximately 1% 4s orbital contribution of one Cu to the ground-state spin wave function upon protonative loss of its His ligand. The contribution of the Cu-Cu interaction to electron delocalization in this low symmetry protein site is evaluated, and the possible functional significance of the pH-dependent transition in regulating proton-coupled electron transfer in cytochrome c oxidase is discussed.

摘要

通过结合电子光谱学和密度泛函理论(DFT)计算,已确定了pH扰动对铜A(CuA)位点的几何结构和电子结构的影响。针对高pH(pH = 7)和低pH(pH = 4)形式的铜A天青蛋白及其H120A突变体进行了描述,这些描述解决了多频电子顺磁共振(EPR)和电子核双共振(ENDOR)数据所表明的离域程度方面的差异(《美国化学会志》2005年,127卷,7274页;《生物物理杂志》2002年,82卷,2758页)。我们的共振拉曼光谱和磁圆二色光谱(MCD)表明,低pH形式和H120A突变体形式基本相同,是完全离域的高pH铜A位点的扰动形式。然而,从高pH转变到低pH时,与电子(S = 1/2)在两个铜原子(I(Cu) = 3/2)上完全离域相关的七线超精细耦合模式转变为反映明显局域化的四线模式。DFT计算表明,未配对电子在低pH形式中是离域的,并揭示其四线超精细模式是由于一个铜原子的约1% 4s轨道对基态自旋波函数的贡献在其组氨酸配体质子化损失时产生的大EPR光谱效应所致。评估了铜 - 铜相互作用对该低对称蛋白质位点中电子离域的贡献,并讨论了pH依赖性转变在调节细胞色素c氧化酶中质子耦合电子转移方面可能的功能意义。

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