首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Bioinorganic Chemistry Special Feature: Interconversion of two oxidized forms of taurine/α-ketoglutarate dioxygenase a non-heme iron hydroxylase: Evidence for bicarbonate binding
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Bioinorganic Chemistry Special Feature: Interconversion of two oxidized forms of taurine/α-ketoglutarate dioxygenase a non-heme iron hydroxylase: Evidence for bicarbonate binding

机译:生物无机化学的特殊功能:牛磺酸/α-酮戊二酸双加氧酶(一种非血红素铁羟化酶)的两种氧化形式的相互转化:碳酸氢盐结合的证据

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摘要

Taurine/α-ketoglutarate (αKG) dioxygenase, or TauD, is a mononuclear non-heme iron hydroxylase that couples the oxidative decarboxylation of αKG to the decomposition of taurine, forming sulfite and aminoacetaldehyde. Prior studies revealed that taurine-free TauD catalyzes an O2- and αKG-dependent self-hydroxylation reaction involving Tyr-73, yielding an Fe(III)-catecholate chromophore with a λmax of 550 nm. Here, a chromophore (λmax 720 nm) is described and shown to arise from O2-dependent self-hydroxylation of TauD in the absence of αKG, but requiring the product succinate. A similar chromophore rapidly develops with the alternative oxidant H2O2. Resonance Raman spectra indicate that the ≈700-nm chromophore also arises from an Fe(III)-catecholate species, and site-directed mutagenesis studies again demonstrate Tyr-73 involvement. The ≈700-nm and 550-nm species are shown to interconvert by the addition or removal of bicarbonate, consistent with the αKG-derived CO2 remaining tightly bound to the oxidized metal site as bicarbonate. The relevance of the metal-bound bicarbonate in TauD to reactions of other members of this enzyme family is discussed.
机译:牛磺酸/α-酮戊二酸(αKG)双加氧酶或TauD是一种单核非血红素铁羟化酶,可将αKG的氧化脱羧作用与牛磺酸的分解结合,形成亚硫酸盐和氨基乙醛。先前的研究表明,不含牛磺酸的TauD可催化涉及Tyr-73的O2和αKG依赖性自羟基化反应,产生λmax为550 nm的Fe(III)-儿茶酚盐生色团。在此,描述了一种生色团(λmax720 nm),该生色团显示是由于在不存在αKG的情况下,TauD的O2依赖性自羟基化而产生的,但需要生成琥珀酸酯。替代氧化剂H2O2会迅速形成类似的生色团。共振拉曼光谱表明,≈700nm发色团也来自于Fe(III)-儿茶酚类,定点诱变研究再次证明了Tyr-73的参与。 ≈700nm和550 nm物种通过添加或除去碳酸氢盐而相互转换,这与αKG衍生的CO2保持紧密结合为氧化氢的氧化金属位点一致。讨论了TauD中金属结合的碳酸氢盐与该酶家族其他成员反应的相关性。

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