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Substrate and Inhibitor Spectra of Ethylbenzene Dehydrogenase: Perspectives on Application Potential and Catalytic Mechanism

机译:乙苯脱氢酶的底物和抑制剂谱:应用潜力和催化机理的观点。

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Ethylbenzene dehydrogenase (EbDH) catalyzes the initial step in anaerobic degradation of ethylbenzene in denitrifying bacteria, namely, the oxygen-independent hydroxylation of ethylbenzene to (S)-1-phenylethanol. In our study we investigate the kinetic properties of 46 substrate analogs acting as substrates or inhibitors of the enzyme. The apparent kinetic parameters of these compounds give important insights into the function of the enzyme and are consistent with the predicted catalytic mechanism based on a quantum chemical calculation model. In particular, the existence of the proposed substrate-derived radical and carbocation intermediates is substantiated by the formation of alternative dehydrogenated and hydroxylated products from some substrates, which can be regarded as mechanistic models. In addition, these results also show the surprisingly high diversity of EbDH in hydroxylating different kinds of alkylaromatic and heterocyclic compounds to the respective alcohols. This may lead to attractive industrial applications of ethylbenzene dehydrogenase for a new process of producing alcohols via hydroxylation of the corresponding aromatic hydrocarbons rather than the customary procedure of reducing the corresponding ketones.
机译:乙苯脱氢酶(EbDH)催化反硝化细菌中乙苯的厌氧降解的初始步骤,即乙苯向(S)-1-苯基乙醇的不依赖氧的羟化反应。在我们的研究中,我们研究了46种底物类似物作为酶的底物或抑制剂的动力学特性。这些化合物的表观动力学参数为酶的功能提供了重要的见解,并且与基于量子化学计算模型的预测催化机理相一致。特别地,所提出的底物衍生的自由基和碳正离子中间体的存在通过从某些底物形成替代的脱氢和羟基化产物而得以证实,这可以被认为是机理模型。此外,这些结果还表明,在将不同种类的烷基芳族和杂环化合物羟基化为相应的醇时,EbDH具有令人惊讶的高多样性。这可能导致乙苯脱氢酶在工业上的诱人工业应用,该工业是通过相应芳族烃的羟基化而不是通常的还原相应酮的方法来生产醇的新方法。

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