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首页> 外文期刊>Biochemistry >The Cys-Tyr Cross-Link of Cysteine Dioxygenase Changes the Optimal pH of the Reaction without a Structural Change
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The Cys-Tyr Cross-Link of Cysteine Dioxygenase Changes the Optimal pH of the Reaction without a Structural Change

机译:半胱氨酸双加氧酶的Cys-Tyr交联键改变了反应的最佳pH,而没有结构变化

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摘要

Cysteine dioxygenase (CDO) is a non-heme monoiron enzyme with an unusual posttranslational modification in the proximity of the ferrous iron active site. This modification, a cysteine to tyrosine thioether bond, cross-links two beta-strands of the beta-barrel. We have investigated its role in catalysis through a combined crystallographic and kinetic approach. The C93G variant lacks the cross-link and shows little change in structure from that of the wild type, suggesting that the cross-link does not stabilize an otherwise unfavorable conformation. A pH-dependent kinetic study shows that both cross-linked and un-cross-linked CDO are active but the optimal pH decreases with the presence of the cross-link. This result reflects the effect of the thioether bond on the pK(a) of Y157 and this residues role in catalysis. At higher pH values, k(cat) is also higher for the cross-linked form, extending the pH range of activity. We therefore propose that the cross-link also increases activity by controlling deleterious interactions involving the thiol/ate of C93.
机译:半胱氨酸双加氧酶(CDO)是一种非血红素单铁酶,在亚铁活性位点附近具有异常的翻译后修饰。半胱氨酸与酪氨酸硫醚键之间的这种修饰使β-桶的两个β-链交联。我们已经通过组合的晶体学和动力学方法研究了其在催化中的作用。 C93G变体缺少交联键,与野生型相比,结构几乎没有变化,这表明交联键无法稳定原本不利的构象。 pH依赖性动力学研究表明,交联和未交联的CDO均具有活性,但最佳的pH值随交联的存在而降低。该结果反映了硫醚键对Y157的pK(a)的影响,并且该残基在催化中起作用。在较高的pH值下,交联形式的k(cat)也较高,从而扩展了活性的pH范围。因此,我们建议通过控制涉及C93硫醇/酸酯的有害相互作用,该交联也可增加活性。

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