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Tuning the formation of a covalent haem–protein link by selection of reductive or oxidative conditions as exemplified by ascorbate peroxidase

机译:通过选择还原性或氧化性条件来调节共价血红蛋白连接的形成例如抗坏血酸过氧化物酶

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摘要

Previous work [Metcalfe, Ott, Patel, Singh, Mistry, Goff and Raven (2004) J. Am. Chem. Soc. >126, 16242–16248] has shown that the introduction of a methionine residue (S160M variant) close to the 2-vinyl group of the haem in ascorbate peroxidase leads to the formation of a covalent haem–methionine linkage under oxidative conditions (i.e. on reaction with H2O2). In the present study, spectroscopic, HPLC and mass spectrometric evidence is presented to show that covalent attachment of the haem to an engineered cysteine residue can also occur in the S160C variant, but, in this case, under reducing conditions analogous to those used in the formation of covalent links in cytochrome c. The data add an extra dimension to our understanding of haem to protein covalent bond formation because they show that different types of covalent attachment (one requiring an oxidative mechanism, the other a reductive pathway) are both accessible within same protein architecture.
机译:以前的工作[Metcalfe,Ott,Patel,Singh,Mistry,Goff和Raven(2004)J. Am。化学Soc。 > 126 ,16242–16248]表明,抗坏血酸过氧化物酶中接近血红素2-乙烯基的蛋氨酸残基(S160M变体)的引入导致形成了共价的血红素-蛋氨酸键在氧化条件下(即与H2O2反应)。在本研究中,光谱,HPLC和质谱法证据表明,血红素与工程化半胱氨酸残基的共价结合也可能发生在S160C变体中,但在这种情况下,还原条件类似于在S160C中使用的还原条件。在细胞色素中形成共价键c。数据为我们对血红素与蛋白质共价键形成的理解增加了一个额外的维度,因为它们表明在同一蛋白质结构内都可以访问不同类型的共价连接(一种需要氧化机制,另一种需要还原途径)。

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