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The metal reductase activity of some multiheme cytochromes c: NMR structural characterization of the reduction of chromium(VI) to chromium(III) by cytochrome c7

机译:某些多血红素细胞色素的金属还原酶活性c:细胞色素c7还原六价铬(III)的NMR结构表征

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摘要

The redox reaction between CrO\documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}{\mathrm{_{{4}}^{{2-}}}}\end{equation*}\end{document} and the fully reduced three-heme cytochrome c7 from Desulfuromonas acetoxidans to give chromium(III) and the fully oxidized protein has been followed by NMR spectroscopy. The hyperfine coupling between the oxidized protein protons and chromium(III), which remains bound to the protein, gives rise to line-broadening effects on the NMR resonances that can be transformed into proton-metal distance restraints. Structure calculations based on these unconventional constraints allowed us to demonstrate that chromium(III) binds at a unique site and to locate it on the protein surface. The metal ion is located 7.9 ± 0.4 Å from the iron of heme IV, 16.3 ± 0.7 Å from the iron of heme III, and 22.5 ± 0.5 Å from the iron of heme I. Shift changes caused by the presence of unreactive MoO\documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}{\mathrm{_{{4}}^{{2-}}}}\end{equation*}\end{document}, a CrO\documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}{\mathrm{_{{4}}^{{2-}}}}\end{equation*}\end{document} analogue, indicate the involvement of the same protein area in the anion binding. The titration of the oxidation of cytochrome c7 shows a detailed mechanism of action. The presence of a specific binding site supports the hypothesis of the biological role of this cytochrome as a metal reductase.
机译:CrO \ documentclass [12pt] {minimum} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} { -69pt} \ begin {document} \ begin {equation *} {\ mathrm {_ {{4}} ^ {{2-2-}}}} \ end {equation *} \ end {document}以及完全精简的三元组-乙酰氧脱硫单胞菌的血红素细胞色素c7生成铬(III),并通过NMR光谱分析了完全氧化的蛋白质。氧化的蛋白质质子与仍与蛋白质结合的铬(III)之间的超精细偶联对NMR共振产生了谱线扩展效应,该效应可转化为质子金属距离约束。基于这些非常规约束的结构计算使我们能够证明铬(III)结合在一个独特的位点并将其定位在蛋白质表面上。金属离子位于距血红素IV铁7.9±0.4 ,、距血红素III铁16.3±0.7 and,距血红素I铁22.5±0.5。的位置。由于存在未反应的MoO \ documentclass而导致的位移变化[12pt] {minimum} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} {-69pt} \ begin {document } \ begin {equation *} {\ mathrm {_ {{4}} ^ {{2-}}}} \ end {equation *} \ end {document},CrO \ documentclass [12pt] {minimal} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} {-69pt} \ begin {document} \ begin {equation *} { \ mathrm {_ {{4}} ^ {{2-}}}} \ end {equation *} \ end {document}类似物,表示阴离子结合中涉及相同的蛋白质区域。细胞色素c7氧化的滴定显示了详细的作用机理。特异性结合位点的存在支持了这种细胞色素作为金属还原酶的生物学作用的假设。

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