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首页> 外文期刊>Chemistry: A European journal >An Artificial Enzyme Made by Covalent Grafting of an Fe-II Complex into beta-Lactoglobulin: Molecular Chemistry, Oxidation Catalysis, and Reaction-Intermediate Monitoring in a Protein
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An Artificial Enzyme Made by Covalent Grafting of an Fe-II Complex into beta-Lactoglobulin: Molecular Chemistry, Oxidation Catalysis, and Reaction-Intermediate Monitoring in a Protein

机译:通过将Fe-II复合物共价接枝到β-乳球蛋白中制成的人工酶:蛋白质中的分子化学,氧化催化和反应中间监测

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摘要

An artificial metalloenzyme based on the covalent grafting of a nonheme Fe-II polyazadentate complex into bovine -lactoglobulin has been prepared and characterized by using various spectroscopic techniques. Attachment of the Fe-II catalyst to the protein scaffold is shown to occur specifically at Cys121. In addition, spectrophotometric titration with cyanide ions based on the spin-state conversion of the initial high spin (S=2) Fe-II complex into a low spin (S=0) one allows qualitative and quantitative characterization of the metal center's first coordination sphere. This biohybrid catalyst activates hydrogen peroxide to oxidize thioanisole into phenylmethylsulfoxide as the sole product with an enantiomeric excess of up to 20%. Investigation of the reaction between the biohybrid system and H2O2 reveals the generation of a high spin (S=5/2) Fe-III((2)-O-2) intermediate, which is proposed to be responsible for the catalytic sulfoxidation of the substrate.
机译:制备了基于非血红素Fe-II多氮杂齿复合物共价接枝到牛乳球蛋白中的人工金属酶,并通过各种光谱技术对其进行了表征。 Fe-II催化剂与蛋白质支架的连接被显示为特别发生在Cys121。此外,基于初始高自旋(S = 2)Fe-II配合物向低自旋(S = 0)的自旋态转化,用氰化物分光光度滴定法可以对金属中心的第一配位进行定性和定量表征。领域。这种生物杂化催化剂活化过氧化氢,将硫代苯甲醚氧化为唯一产物,其对映体过量不超过20%。对生物杂化体系与H2O2之间反应的研究表明,高自旋(S = 5/2)Fe-III((2)-O-2)中间体的产生,该中间体被认为负责催化的硫代氧化反应。基质。

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