首页> 外文期刊>Biochemistry >Comparison of the physiologically equivalent proteins cytochrome c6 and plastocyanin on the basis of their electrostatic potentials. Tryptophan 63 in cytochrome c6 may be isofunctional with tyrosine 83 in plastocyanin
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Comparison of the physiologically equivalent proteins cytochrome c6 and plastocyanin on the basis of their electrostatic potentials. Tryptophan 63 in cytochrome c6 may be isofunctional with tyrosine 83 in plastocyanin

机译:根据它们的静电势比较生理等效蛋白细胞色素c6和质体蓝蛋白。细胞色素c6中的色氨酸63与质体蓝素中的酪氨酸83是同功能的

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The blue copper protein plastocyanin and the heme protein cytochrome c6 differ in composition and in structure but perform the same function in the photosynthetic electron-transport chain. We compare these two proteins on the basis of their electrostatic potentials in order to understand the structural basis of their functional equivalence. In the first approach, we use a monopole-dipole approximation of the electrostatic potentials to superimpose the proteins. The resulting alignment suggests that Tyr51 in cytochrome c6 corresponds to Tyr83 in plastocyanin. But since Tyr51 is not conserved in all known cytochrome c6 sequences, a physiological role of this residue is questionable. In a more sophisticated approach, we applied the recently-developed Fame (flexible alignment of molecule ensembles) algorithm, in which molecules are superimposed by optimizing the similarity of their electrostatic potentials with respect to the relative orientation of the molecules. On the basis of the Fame alignments of plastocyanin and cytochrome c6, we analyze the docking and the electron-transfer reactions of these two proteins with its physiological reaction partner cytochrome f. We derive functional analogies for individual amino acids in possible electron-transfer paths in the interprotein redox reactions. We identify two surface patches in cytochrome c6 that may be involved in electron-transfer paths. The hydrophobic patch with the exposed heme edge in cytochrome c6 may be equivalent to the hydrophobic patch with His87 in plastocyanin, whereas Trp63 in cytochrome c6 may be equivalent to Tyr83 in plastocyanin. An aromatic amino acid is present at the position of Trp63 in all known cytochrome c6 sequences. The electronic coupling between the heme and the copper site on the one side and several potentially important amino acid residues on the other is analyzed by the Pathways method. We have proposed recently that Lys65 of cytochrome f and Tyr83 of plastocyanin form a cation-pi system, which may be involved in a two-step mechanism of the electron-transfer reaction between these two proteins from higher plants. Now we corroborate this proposal by analyzing available amino acid sequences.
机译:蓝色铜蛋白质体蓝蛋白和血红素蛋白细胞色素c6在组成和结构上有所不同,但在光合作用电子传输链中执行相同的功能。我们根据它们的静电势比较这两种蛋白质,以了解其功能等效的结构基础。在第一种方法中,我们使用静电势的单极-偶极近似来叠加蛋白质。产生的比对表明,细胞色素c6中的Tyr51对应于质体蓝蛋白中的Tyr83。但是由于Tyr51在所有已知的细胞色素c6序列中都不保守,因此该残基的生理作用值得怀疑。在更复杂的方法中,我们应用了最近开发的Fame(分子集合的柔性排列)算法,该算法通过优化其静电势相对于分子的相对方向的相似性来叠加分子。根据质体蓝素和细胞色素c6的成因比对,我们分析了这两种蛋白质及其生理反应伴侣细胞色素f的对接和电子转移反应。我们得出蛋白质间氧化还原反应中可能的电子转移路径中单个氨基酸的功能类比。我们在细胞色素c6中识别出两个可能参与电子转移路径的表面斑块。在细胞色素c6中带有暴露的血红素边缘的疏水斑块可能等同于在质体蓝蛋白中具有His87的疏水性斑块,而在细胞色素c6中的Trp63可能与质体蓝蛋白中的Tyr83等同。在所有已知的细胞色素c6序列中Trp63的位置都存在一个芳香族氨基酸。血红素和一侧的铜位点之间以及另一侧的几个潜在重要氨基酸残基之间的电子偶联通过路径方法进行了分析。我们最近提出,细胞色素f的Lys65和质体蓝蛋白的Tyr83形成阳离子-pi系统,这可能与来自高等植物的这两种蛋白质之间的电子转移反应的两步机理有关。现在,我们通过分析可用的氨基酸序列来证实这一建议。

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