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Oxygen-18Kinetic Isotope Effects of Nonheme IronEnzymes HEPD and MPnS Support Iron(III) Superoxide as the HydrogenAbstraction Species

机译:氧气18非血红素铁的动力学同位素效应酶HEPD和MPnS支持超氧铁(III)作为氢抽象物种

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摘要

Nonheme iron oxygenases that carry out four-electron oxidations of substrate have been proposed to employ iron(III) superoxide species to initiate this reaction [Paria, S.; Que, L.; Paine, T. K. Angew. Chem. Int. Ed.>2011, 50, 11129]. Here we report experimental evidence in support of this proposal. 18O KIEs were measured for two recently discovered mononuclear nonheme iron oxygenases: hydroxyethylphosphonate dioxygenase (HEPD) and methylphosphonate synthase (MPnS). Competitive 18O KIEs measured with deuterated substrates are larger than those measured with unlabeled substrates, which indicates that C–H cleavage must occur before an irreversible reductive step at molecular oxygen. A similar observation was previously used to implicate copper(II) superoxide in the H-abstraction reactions catalyzed by dopamine β-monooxygenase [Tian, G. C.; Klinman, J. P. J. Am. Chem. Soc.>1993, 115, 8891] and peptidylglycine α-hydroxylating monooxygenase [Francisco, W. A.; Blackburn, N. J.; Klinman, J. P. Biochemistry>2003, 42, 1813].
机译:已提出对底物进行四电子氧化的非血红素铁加氧酶采用铁(III)超氧化物类来引发该反应[Paria,S。; J.Am.Chem.Soc。,1992,5,1897]。 Que,L .;潘恩(T. K. Angew)。化学诠释Ed。> 2011 ,50,11129]。在这里,我们报告了支持该提议的实验证据。测定了最近发现的两种单核非血红素铁加氧酶的 18 O KIE:羟乙基膦酸双加氧酶(HEPD)和甲基膦酸合酶(MPnS)。用氘化底物测得的竞争性 18 O KIE大于未标记底物测得的竞争性,这表明在分子氧不可逆还原步骤之前,必须进行C–H裂解。以前曾使用类似的观察将多价铜(II)包含在由多巴胺β-单加氧酶催化的H吸收反应中[Tian,G. C .;克林曼(J.P. J. Am。)化学> 1993 ,Soc。> 1993 ,和肽基甘氨酸α-羟基化单加氧酶[Francisco,W. A .;新泽西州布莱克本; Klinman,J.P.Biochemistry > 2003 ,42,1813]。

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