首页> 美国卫生研究院文献>Biochemical Journal >Studies by electron-paramagnetic-resonance spectroscopy of the environment of the metal in the molybdenum cofactor of molybdenum-containing enzymes.
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Studies by electron-paramagnetic-resonance spectroscopy of the environment of the metal in the molybdenum cofactor of molybdenum-containing enzymes.

机译:通过电子顺磁共振光谱法研究含钼酶的钼辅助因子中金属的环境。

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摘要

The molybdenum cofactor prepared by denaturing xanthine oxidase by heat treatment or other methods was partially purified by anaerobic gel filtration in the presence of sodium dithionite, with little loss of activity. A range of products with different elution volumes was obtained. This behaviour is apparently related to association of the molybdenum cofactor with various residual peptides. E.p.r. signals from molybdenum (V) in the active cofactor, present either in crude preparations or in purified fractions, may be generated in dimethyl sulphoxide solution by controlled oxidation carried out on the molybdenum cofactor alone or in the presence of added thiols. The g-values of the spectra suggest that in the oxidized cofactor molybdenum has one terminal oxygen ligand and four ligands from thiolate groups. It is proposed that two of these are from the organic part of the cofactor and two from cysteine residues in the protein or in residual peptides. A signal generated in high yield with little loss of cofactor activity in the presence of thiophenol has g parallel = 2.0258 and g = 1.9793. It is suggested that in this species two cysteine residues have been replaced by two thiophenol molecules. The possible usefulness of the thiophenol complex in further purification of the molybdenum cofactor is discussed.
机译:在连二亚硫酸钠的存在下,通过厌氧凝胶过滤,通过热处理或其他方法使黄嘌呤氧化酶变性而制备的钼辅因子被部分纯化,活性几乎没有。获得了一系列具有不同洗脱体积的产品。这种行为显然与钼辅因子与各种残留肽的缔合有关。 E.p.r.粗制制剂或纯化馏分中存在的活性辅因子中的钼(V)信号可通过仅在钼辅因子上或在添加的硫醇存在下进行的受控氧化在二甲基亚砜溶液中产生。光谱的g值表明,在氧化的辅因子中,钼具有一个末端氧配体和四个来自硫醇盐基团的配体。提议其中两个来自辅因子的有机部分,两个来自蛋白质或残留肽中的半胱氨酸残基。在存在苯酚的情况下,高收率产生的信号几乎没有辅因子活性损失,其平行g平行度= 2.0258,g = 1.9793。建议在该物种中,两个半胱氨酸残基已被两个硫酚分子取代。讨论了硫酚复合物在进一步纯化钼辅助因子中的可能用途。

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