De Rienzo F, Gabdoulline R R, Menziani M C, De Benedetti P G, Wade R C
Università di Modena e Reggio Emilia, Dipartimento di Chimica, Via Campi, 183-41100 Modena, Italy.
Biophys J. 2001 Dec;81(6):3090-104. doi: 10.1016/S0006-3495(01)75947-4.
The oxidation of cytochrome f by the soluble cupredoxin plastocyanin is a central reaction in the photosynthetic electron transfer chain of all oxygenic organisms. Here, two different computational approaches are used to gain new insights into the role of molecular recognition and protein-protein association processes in this redox reaction. First, a comparative analysis of the computed molecular electrostatic potentials of seven single and multiple point mutants of spinach plastocyanin (D42N, E43K, E43N, E43Q/D44N, E59K/E60Q, E59K/E60Q/E43N, Q88E) and the wt protein was carried out. The experimentally determined relative rates (k(2)) for the set of plastocyanin mutants are found to correlate well (r(2) = 0.90 - 0.97) with the computed measure of the similarity of the plastocyanin electrostatic potentials. Second, the effects on the plastocyanin/cytochrome f association rate of these mutations in the plastocyanin "eastern site" were evaluated by simulating the association of the wild type and mutant plastocyanins with cytochrome f by Brownian dynamics. Good agreement between the computed and experimental relative rates (k(2)) (r(2) = 0.89 - 0.92) was achieved for the plastocyanin mutants. The results obtained by applying both computational techniques provide support for the fundamental role of the acidic residues at the plastocyanin eastern site in the association with cytochrome f and in the overall electron-transfer process.
可溶性铜蓝蛋白质体蓝素对细胞色素f的氧化作用是所有产氧生物光合电子传递链中的核心反应。在此,我们使用两种不同的计算方法来深入了解分子识别和蛋白质-蛋白质缔合过程在这一氧化还原反应中的作用。首先,对菠菜质体蓝素的七个单点和多点突变体(D42N、E43K、E43N、E43Q/D44N、E59K/E60Q、E59K/E60Q/E43N、Q88E)以及野生型蛋白质的计算分子静电势进行了比较分析。发现质体蓝素突变体系的实验测定相对速率(k(2))与质体蓝素静电势相似性的计算指标具有良好的相关性(r(2) = 0.90 - 0.97)。其次,通过布朗动力学模拟野生型和突变体质体蓝素与细胞色素f的缔合,评估了质体蓝素“东部位点”这些突变对质体蓝素/细胞色素f缔合速率的影响。质体蓝素突变体的计算相对速率与实验相对速率(k(2))之间达成了良好的一致性(r(2) = 0.89 - 0.92)。应用这两种计算技术所获得的结果支持了质体蓝素东部位点酸性残基在与细胞色素f缔合以及整个电子传递过程中的基本作用。