Gayda J P, Benosman H, Bertrand P, More C, Asso M
Laboratoire d'Electronique des Milieux Condensés, Unité Associé du Centre National de la Recherche Scientifique 784, Université de Provence, Marseille, France.
Eur J Biochem. 1988 Oct 15;177(1):199-206. doi: 10.1111/j.1432-1033.1988.tb14362.x.
In cytochromes c3 which contain four hemes per molecule, the redox properties of each heme may depend upon the redox state of the others. This effect can be described in terms of interaction redox potentials between the hemes and must be taken into account in the characterization of the redox properties of the molecule. We present here a method of measurement of these interactions based on the EPR study of the redox equilibria of the protein. The microscopic and macroscopic midpoint potentials and the interaction potentials are deduced from the analysis of the redox titration curves of the intensity and the amplitude of the EPR spectrum. This analysis includes a precise simulation of the spectrum of the protein in the oxidized state in order to determine the relative contribution of each heme to the spectral amplitude. Using our method on cytochrome c3 from D. desulfuricans Norway, we found evidence for the existence of weak interaction potentials between the hemes. The three interaction potentials which have been measured are characterized by absolute values lower than 20 mV in contrast with the values larger than 40-50 mV which have been reported for cytochrome c3 from D. gigas. Simulations of the spectra of samples poised at different potentials indicate a structural modification of the heme with the most negative potential during the first step of reduction. The correspondence between the redox sites as characterized by the EPR potentiometric titration and the hemes in the tridimensional structure is discussed.
在每个分子含有四个血红素的细胞色素c3中,每个血红素的氧化还原特性可能取决于其他血红素的氧化还原状态。这种效应可以用血红素之间的相互作用氧化还原电位来描述,并且在表征该分子的氧化还原特性时必须予以考虑。我们在此提出一种基于对该蛋白质氧化还原平衡的电子顺磁共振(EPR)研究来测量这些相互作用的方法。微观和宏观中点电位以及相互作用电位是通过对EPR谱强度和幅度的氧化还原滴定曲线分析推导出来的。该分析包括对氧化态蛋白质谱的精确模拟,以便确定每个血红素对光谱幅度的相对贡献。使用我们的方法对来自挪威脱硫弧菌的细胞色素c3进行研究,我们发现了血红素之间存在弱相互作用电位的证据。所测量的三个相互作用电位的绝对值低于20 mV,相比之下,已报道的来自巨大脱硫弧菌的细胞色素c3的相互作用电位值大于40 - 50 mV。对处于不同电位的样品光谱进行模拟表明,在还原的第一步中,具有最负电位的血红素会发生结构修饰。讨论了通过EPR电位滴定表征的氧化还原位点与三维结构中的血红素之间的对应关系。