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Intermolecular Interaction Study of Dissimilatory Sulfite Reductase (DsrAB) from Sulfur Oxidizing Proteobacteria Allchromatium vinosum

机译:硫化硫酸硫酸盐血管血管硫菌硫酸硫酸盐还原酶(DSRAB)的分子间相互作用研究

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Dissimilatory Sulfite Reductase (dSiR) is the main redox enzyme system utilized in sulfur metabolism in both sulfur oxidizing and reducing prokaryotes. Anoxygenic phototrophic bacteria Allochromatium vinosum produces elemental sulfur during sulfur cycle which is ultimately oxidized sulfate by DSR operon. Allochromatium vinosum encodes dsrAB reverse dSiR that oxidizes thiosulfate or elemental sulfur. DsrAB is a α_2β_2 hetero-tetrameric complex. In our present study, we first reported the three dimensional structure of DsrAB protein complex from Allochromatium vinosum and we also predicted the protein-protein interactions between DsrA and DsrB proteins. DsrAB is a major redox enzyme complex required in both sulfur oxidation and reduction processes so this structure function relationship investigation will help in researches to predict the biochemical mechanism of sulfur-oxidation. The importance of the study lies in the fact that sulfur metabolism pathways are used in waste remediation and bio-hydrogen production. This is the most important aspect of our analysis.
机译:含硫酸盐亚硫酸盐还原酶(DSIR)是在硫氧化和减少原核生物中使用的硫代谢中使用的主要氧化还原酶系统。亚麻酸荧光养殖细菌血清血管在硫循环期间产生元素硫,最终通过DSR操纵子氧化硫酸盐。 Allochromatium v​​inosum编码Dsrab反向DSIR,氧化硫代硫酸盐或元素硫。 DSRAB是α_2β_2杂 - 四聚体复合物。在我们目前的研究中,我们首先报道了来自异种血清瘤的DSRAB蛋白复合物的三维结构,我们还预测了DSRA和DSRB蛋白之间的蛋白质 - 蛋白质相互作用。 DSRAB是硫氧化和还原过程中所需的主要氧化还原酶络合物,因此这种结构功能关系调查将有助于研究预测硫氧化的生化机制。该研究的重要性在于,硫代谢途径用于废物修复和生物氢生产。这是我们分析中最重要的方面。

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