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首页> 外文期刊>The Journal of Biochemistry >Structural and mutational studies of an electron transfer complex of maize sulfite reductase and ferredoxin
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Structural and mutational studies of an electron transfer complex of maize sulfite reductase and ferredoxin

机译:玉米亚硫酸还原酶和铁氧还蛋白的电子转移复合物的结构和突变研究

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The structure of the complex of maize sulfite reductase (SiR) and ferredoxin (Fd) has been determined by Xray crystallography. Co-crystals of the two proteins prepared under different conditions were subjected to the diffraction analysis and three possible structures of the complex were solved. Although topological relationship of SiR and Fd varied in each of the structures, two characteristics common to all structures were found in the pattern of protein-protein interactions and positional arrangements of redox centres; (i) a few negative residues of Fd contact with a narrow area of SiR with positive electrostatic surface potential and (ii) [2Fe-2S] cluster of Fd and [4Fe-4S] cluster of SiR are in a close proximity with the shortest distance around 12 A. Mutational analysis of a total of seven basic residues of SiR distributed widely at the interface of the complex showed their importance for supporting an efficient Fd-dependent activity and a strong physical binding to Fd. These combined results suggest that the productive electron transfer complex of SiR and Fd could be formed through multiple processes of the electrostatic intermolecular interaction and this implication is discussed in terms of the multi-functionality of Fd in various redox metabolisms.
机译:玉米亚硫酸还原酶(SiR)和铁氧还蛋白(Fd)的复合物的结构已通过X射线晶体学测定。对在不同条件下制备的两种蛋白质的共晶体进行了衍射分析,并解析了该复合物的三种可能的结构。尽管SiR和Fd的拓扑关系在每个结构中都不同,但是在蛋白质间相互作用的模式和氧化还原中心的位置排列中,发现了所有结构共有的两个特征。 (i)Fd的一些负残基与狭窄的具有正静电表面电势的SiR接触,并且(ii)Fd的[2Fe-2S]簇和SiR的[4Fe-4S]簇最短大约12 A的距离。对复杂分布于界面处的7个SiR基本残基的突变分析表明,它们对于支持有效的Fd依赖性活性和与Fd的牢固结合具有重要意义。这些综合结果表明,SiR和Fd的生产性电子转移复合物可以通过静电分子间相互作用的多个过程形成,并且就Fd在各种氧化还原代谢中的多功能性进行了讨论。

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