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血红素辅基中电子质子偶联的调制作用通过氧化型细胞色素 c 氧化酶中催化中心的配位得到加强。

Modulation of the electron-proton coupling at cytochrome a by the ligation of the oxidized catalytic center in bovine cytochrome c oxidase.

机构信息

Department of Biophysics, Faculty of Science, University of P. J. Safarik, Jesenna 5, 041 54, Kosice, Slovak Republic.

Center for Interdisciplinary Biosciences, Technology and Innovation Park, University of P. J. Safarik, Jesenna 5, 041 54, Kosice, Slovak Republic.

出版信息

Biochim Biophys Acta Bioenerg. 2020 Sep 1;1861(9):148237. doi: 10.1016/j.bbabio.2020.148237. Epub 2020 May 30.

Abstract

Cytochrome a was suggested as the key redox center in the proton pumping process of bovine cytochrome c oxidase (CcO). Recent studies showed that both the structure of heme a and its immediate vicinity are sensitive to the ligation and the redox state of the distant catalytic center composed of iron of cytochrome a (Fe) and copper (Cu). Here, the influence of the ligation at the oxidized Fe-Cu center on the electron-proton coupling at heme a was examined in the wide pH range (6.5-11). The strength of the coupling was evaluated by the determination of pH dependence of the midpoint potential of heme a (E(a)) for the cyanide (the low-spin Fe) and the formate-ligated CcO (the high-spin Fe). The measurements were performed under experimental conditions when other three redox centers of CcO are oxidized. Two slightly differing linear pH dependencies of E(a) were found for the CN- and the formate-ligated CcO with slopes of -13 mV/pH unit and -23 mV/pH unit, respectively. These linear dependencies indicate only a weak and unspecific electron-proton coupling at cytochrome a in both forms of CcO. The lack of the strong electron-proton coupling at the physiological pH values is also substantiated by the UV-Vis absorption and electron-paramagnetic resonance spectroscopy investigations of the cyanide-ligated oxidized CcO. It is shown that the ligand exchange at Fe between His-Fe-His and His-Fe-OH occurs only at pH above 9.5 with the estimated pK >11.0.

摘要

细胞色素 a 被认为是牛细胞色素 c 氧化酶 (CcO) 质子泵过程中的关键氧化还原中心。最近的研究表明,血红素 a 的结构及其紧邻区域对由细胞色素 a 的铁 (Fe) 和铜 (Cu) 组成的远距离催化中心的配位和氧化还原状态都很敏感。在这里,在宽 pH 范围内 (6.5-11) 研究了氧化的 Fe-Cu 中心的配位对血红素 a 上电子质子偶联的影响。通过测定氰化物 (低自旋 Fe) 和甲酸盐配位的 CcO (高自旋 Fe) 的血红素 a 中点电位 (E(a)) 的 pH 依赖性来评估偶联强度。在 CcO 的其他三个氧化还原中心都被氧化的实验条件下进行了测量。对于 CN-和甲酸盐配位的 CcO,发现 E(a) 的两条略有不同的线性 pH 依赖性,斜率分别为-13 mV/pH 单位和-23 mV/pH 单位。这些线性依赖性表明在两种形式的 CcO 中,细胞色素 a 上的电子质子偶联仅微弱且无特异性。在生理 pH 值下缺乏强电子质子偶联也得到了氰化物配位氧化 CcO 的紫外可见吸收和电子顺磁共振光谱研究的证实。结果表明,只有在 pH 高于 9.5 时,His-Fe-His 和 His-Fe-OH 之间的 Fe 配体交换才会发生,估计 pK>11.0。

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