首页> 外文OA文献 >Covalent structure of the flavoprotein subunit of the flavocytochrome c: sulfide dehydrogenase from the purple phototrophic bacterium Chromatium vinosum.
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Covalent structure of the flavoprotein subunit of the flavocytochrome c: sulfide dehydrogenase from the purple phototrophic bacterium Chromatium vinosum.

机译:紫色光养细菌Chromatium v​​inosum的黄素细胞色素c:硫化物脱氢酶的黄素蛋白亚基的共价结构。

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摘要

The amino acid sequence of the flavoprotein subunit of Chromatium vinosum flavocytochrome c-sulfide dehydrogenase (FCSD) was determined by automated Edman degradation and mass spectrometry in conjunction with the three-dimensional structure determination (Chen Z et al., 1994, Science 266:430-432). The sequence of the diheme cytochrome c subunit was determined previously. The flavoprotein contains 401 residues and has a calculated protein mass, including FAD, of 43,568 Da, compared with a mass of 43,652 +/- 44 Da measured by LDMS. There are six cysteine residues, among which Cys 42 provides the site of covalent attachment of the FAD. Cys 161 and Cys 337 form a disulfide bond adjacent to the FAD. The flavoprotein subunit of FCSD is most closely related to glutathione reductase (GR) in three-dimensional structure and, like that protein, contains three domains. However, approximately 20 insertions and deletions are necessary for alignment and the overall identity in sequence is not significantly greater than for random comparisons. The first domain binds FAD in both proteins. Domain 2 of GR is the site of NADP binding, but has an unknown role in FCSD. We postulate that it is the binding site for a cofactor involved in oxidation of reduced sulfur compounds. Domains 1 and 2 of FCSD, as of GR, are homologous to one another and represent an ancient gene doubling. The third domain provides the dimerization interface for GR, but is the site of binding of the cytochrome subunit in FCSD. The four functional entities, predicted to be near the FAD from earlier studies of the kinetics of sulfite adduct formation and decay, have now been identified from the three-dimensional structure and the sequence as Cys 161/Cys 337 disulfide, Trp 391, Glu 167, and the positive end of a helix dipole.
机译:通过自动Edman降解和质谱联用三维结构测定,确定了葡萄黄质黄细胞色素c-硫化物脱氢酶(FCSD)黄素蛋白亚基的氨基酸序列(Chen Z等,1994,Science 266:430) -432)。预先确定了二血红素细胞色素c亚基的序列。黄素蛋白含有401个残基,计算得出的蛋白质质量(包括FAD)为43568 Da,而LDMS测定的蛋白质质量为43652 +/- 44 Da。有六个半胱氨酸残基,其中Cys 42提供了FAD的共价连接位点。 Cys 161和Cys 337与FAD相邻形成二硫键。 FCSD的黄素蛋白亚单位在三维结构上与谷胱甘肽还原酶(GR)密切相关,并且与该蛋白一样,包含三个结构域。但是,大约需要20个插入和缺失才能进行比对,而且序列中的整体同一性并不比随机比较大得多。第一结构域结合两种蛋白质中的FAD。 GR的域2是NADP绑定的站点,但在FCSD中的作用未知。我们假定它是参与还原的硫化合物氧化的辅因子的结合位点。与GR一样,FCSD的结构域1和2彼此同源,代表古老的基因加倍。第三个结构域为GR提供了二聚化界面,但它是FCSD中细胞色素亚基的结合位点。根据较早的亚硫酸盐加合物形成和衰变动力学的研究,预计这四个功能实体与FAD接近,现已从三维结构和序列中鉴定出Cys 161 / Cys 337二硫化物,Trp 391,Glu 167。 ,以及螺旋偶极子的正极。

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