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黄素氧还蛋白与细胞色素c3之间形成三元复合物的证据:1H-NMR和分子模拟研究。

Evidence for a ternary complex formed between flavodoxin and cytochrome c3: 1H-NMR and molecular modeling studies.

作者信息

Palma P N, Moura I, LeGall J, Van Beeumen J, Wampler J E, Moura J J

机构信息

Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, Monte da Caparica, Portugal.

出版信息

Biochemistry. 1994 May 31;33(21):6394-407. doi: 10.1021/bi00187a003.

Abstract

Small electron-transfer proteins such as flavodoxin (16 kDa) and the tetraheme cytochrome c3 (13 kDa) have been used to mimic, in vitro, part of the complex electron-transfer chain operating between substrate electron donors and respiratory electron acceptors, in sulfate-reducing bacteria (Desulfovibrio species). The nature and properties of the complex formed between these proteins are revealed by 1H-NMR and molecular modeling approaches. Our previous study with the Desulfovibrio vulgaris proteins [Moura, I., Moura, J.J. G., Santos, M.H., & Xavier, A. V. (1980) Cienc. Biol. (Portugal) 5, 195-197; Stewart, D.E. LeGall, J., Moura, I., Moura, J. J. G., Peck, H.D. Jr., Xavier, A. V., Weiner, P. K., & Wampler, J.E. (1988) Biochemistry 27, 2444-2450] indicated that the complex between cytochrome c3 and flavodoxin could be monitored by changes in the NMR signals of the heme methyl groups of the cytochrome and that the electrostatic surface charge (Coulomb's law) on the two proteins favored interaction between one unique heme of the cytochrome with flavodoxin. If the interaction is indeed driven by the electrostatic complementarity between the acidic flavodoxin and a unique positive region of the cytochrome c3, other homologous proteins from these two families of proteins might be expected to interact similarly. In this study, three homologous Desulfovibrio cytochromes c3 were used, which show a remarkable variation in their individual isoelectric points (ranging from 5.5 to 9.5). On the basis of data obtained from protein-protein titrations followed at specific proton NMR signals (i.e., heme methyl resonances), a binding model for this complex has been developed with evaluation of stoichiometry and binding constants. This binding model involves one site on the cytochromes c3 and two sites on the flavodoxin, with formation of a ternary complex at saturation. In order to understand the potential chemical form of the binding model, a structural model for the hypothetical ternary complex, formed between one molecule of Desulfovibrio salexigens flavodoxin and two molecules of cytochrome c3, is proposed. These molecular models of the complexes were constructed on the basis of complementarity of Coulombic electrostatic surface potentials, using the available X-ray structures of the isolated proteins and, when required, model structures (D. salexigens flavodoxin and Desulfovibrio desulfuricans ATCC 27774 cytochrome c3) predicted by homology modeling.

摘要

诸如黄素氧还蛋白(16 kDa)和四血红素细胞色素c3(13 kDa)等小电子传递蛋白已被用于在体外模拟硫酸盐还原细菌(脱硫弧菌属)中底物电子供体与呼吸电子受体之间运行的部分复杂电子传递链。通过1H-NMR和分子建模方法揭示了这些蛋白质之间形成的复合物的性质和特性。我们之前对普通脱硫弧菌蛋白质的研究[穆拉,I.,穆拉,J.J.G.,桑托斯,M.H.,& 泽维尔,A.V.(1980年)《生物科学》(葡萄牙)5,195 - 197;斯图尔特,D.E. 勒加尔,J.,穆拉,I.,穆拉,J.J.G.,佩克,H.D. Jr.,泽维尔,A.V.,韦纳,P.K.,& 万普勒,J.E.(1988年)《生物化学》27,2444 - 2450]表明,细胞色素c3和黄素氧还蛋白之间的复合物可以通过细胞色素血红素甲基基团的NMR信号变化来监测,并且这两种蛋白质上的静电表面电荷(库仑定律)有利于细胞色素的一个独特血红素与黄素氧还蛋白之间的相互作用。如果这种相互作用确实是由酸性黄素氧还蛋白与细胞色素c3的一个独特正电荷区域之间的静电互补性驱动的,那么预计这两个蛋白质家族中的其他同源蛋白质也会有类似的相互作用。在本研究中,使用了三种同源的脱硫弧菌细胞色素c3,它们的各自等电点有显著差异(范围从5.5到9.5)。基于在特定质子NMR信号(即血红素甲基共振)下进行的蛋白质 - 蛋白质滴定获得的数据,已开发出该复合物的结合模型,并对化学计量学和结合常数进行了评估。该结合模型涉及细胞色素c3上的一个位点和黄素氧还蛋白上的两个位点,在饱和时形成三元复合物。为了理解结合模型的潜在化学形式,提出了一种由盐生脱硫弧菌黄素氧还蛋白的一个分子与两个细胞色素c3分子形成的假设三元复合物的结构模型。这些复合物的分子模型是基于库仑静电表面电位的互补性构建的,使用了分离蛋白质的可用X射线结构,并在需要时使用同源建模预测的模型结构(盐生脱硫弧菌黄素氧还蛋白和脱硫脱硫弧菌ATCC 27774细胞色素c3)。

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