首页> 外文期刊>Biochemistry >Intermediates and Transition States in Thiamin Diphosphate-Dependent Decarboxylases.A Kinetic and NMR Study on Wild-Type Indolepyruvate Decarboxylase and Variants Using Indolepyruvate,Benzoylformate,and Pyruvate as Substrates
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Intermediates and Transition States in Thiamin Diphosphate-Dependent Decarboxylases.A Kinetic and NMR Study on Wild-Type Indolepyruvate Decarboxylase and Variants Using Indolepyruvate,Benzoylformate,and Pyruvate as Substrates

机译:硫胺二磷酸依赖性脱羧酶的中间体和过渡态。以吲哚丙酮酸,苄基甲酸酯和丙酮酸为底物,对野生型吲哚丙酮酸脱羧酶及其变体进行动力学和核磁共振研究

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The thiamin diphosphate (ThDP)-dependent enzyme indolepyruvate decarboxylase (IPDC) is involved in the biosynthetic pathway of the phytohormone 3-indoleacetic acid and catalyzes the nonoxidative decarboxylation of 3-indolepyruvate to 3-indoleacetaldehyde and carbon dioxide.The steady-state distribution of covalent ThDP intermediates of IPDC reacting with 3-indolepyruvate and the alternative substrates benzoylformate and pyruvate has been analyzed by ~1H NMR spectroscopy.For the first time,we are able to isolate and directly assign covalent intermediates of ThDP with aromatic substrates.The intermediate analysis of IPDC variants is used to infer the involvement of active site side chains and functional groups of the cofactor in distinct catalytic steps during turnover of the different substrates.As a result,three residues (glutamate 468,aspartate 29,and histidine 115) positioned perpendicular to the thiazolium moiety of ThDP are involved in binding of all substrates and decarboxylation of the respective tetrahedral ThDP-substrate adducts.Most likely,interactions of these side chains with the substrate-derived carboxylate account for an optimal orientation of the substrate and/or intermediate in the course of carbon-carbon ligation and decarboxylation supporting the suggested least-motion,maximum overlap mechanism.The active site residue glutamine 383,which is located at the opposite site of the thiazolium nucleus as the "carboxylate pocket" (formed by the Glu-Asp-His triad),is central to the substrate specificity of IPDC,probably through orbital alignment.The Glu51 -cofactor proton shuttle is,conjointly with the Glu-Asp-His triad,involved in multiple proton transfer steps,including ylide generation,substrate binding,and product release.Studies with para-substituted benzoylformate substrates demonstrate that the electronic properties of the substrate affect the stabilization or destabilization of the carbanion intermediate or carbanion-like transition state and in that way alter the rate dependence on decarboxylation.In conclusion,general mechanistic principles of catalysis of ThDP-dependent enzymes are discussed.
机译:硫胺素二磷酸(ThDP)依赖性酶吲哚丙酮酸脱羧酶(IPDC)参与植物激素3-吲哚乙酸的生物合成途径,并催化3-吲哚丙酮酸的非氧化脱羧反应生成3-吲哚乙醛和二氧化碳。通过〜1H NMR光谱分析了IPDC与3-吲哚丙酮酸酯和其他底物苯甲酰基甲酸酯和丙酮酸酯反应的共价ThDP中间体。首次,我们能够分离并直接将ThDP的共价中间体与芳族底物进行分配。 IPDC变体的不同被用来推断活性因子侧链和辅因子的官能团在不同底物更新过程中在不同的催化步骤中的参与。结果,三个残基(谷氨酸468,天冬氨酸29和组氨酸115)垂直ThDP的噻唑鎓部分与所有底物的结合和脱羧有关这些侧链与底物衍生的羧酸盐的相互作用最有可能导致碳和碳连接和脱羧过程中底物和/或中间体的最佳取向,从而支持了建议的最小限度的-活性位点谷氨酰胺383位于噻唑核的与“羧酸盐袋”(由Glu-Asp-His三联体形成)相对的位点,对IPDC的底物特异性至关重要Glu51-辅因子质子穿梭与Glu-Asp-His三联体结合,涉及多个质子转移步骤,包括生成叶立德,结合底物和释放产物。对位取代的苯甲酰甲酸酯底物的研究表明底物的电子性质会影响碳负离子中间体或类似碳负离子的过渡态的稳定或去稳定作用总之,讨论了ThDP依赖性酶催化的一般机理。

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