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A Density Functional Theory Study on the Catalytic Mechanism of Hydroxycinnamoyl-CoA Hydratase-Lyase

机译:羟基肉桂酰辅酶A水合酶催化酶的密度泛函理论研究

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摘要

Hydroxycinnamoyl-CoA hydratase-lyase (HCHL), a particular member of the crotonase superfamily, catalyzes the bioconversion of feruloyl-CoA to the important flavor and fragrance compound vanillin. In this article, the catalytic mechanism of HCHL has been studied by using hybrid density functional theory method with simplified models. The calculated results reveal that the mechanism involves the hydration of the C=C double bond of feruloyl- CoA and thence the cleavage of C-C single bond of β-hydroxythioester. The hydration step is a typical concerted process, whereas C-C bond cleavage follows a concerted but asynchronous mechanism. The calculated energy barrier of hydration reaction is only slightly lower than that of cleavage process, implying both of two processes are rate limiting. By using three substrate analogs, the substrate specificity of HCHL was further examined. It is found that the p-hydroxyl group of aromatic ring is necessary for the catalytic reaction.
机译:羟肉桂酸辅酶A水合酶裂解酶(HCHL)是巴豆酶超家族的特定成员,催化阿魏酰辅酶A向重要的香气和香气化合物香草醛的生物转化。本文采用简化模型的混合密度泛函理论方法研究了HCHL的催化机理。计算结果表明,该机理涉及阿魏酰-CoA的C = C双键的水合作用,并因此裂解了β-羟基硫酯的C-C单键。水合步骤是典型的协同过程,而C-C键裂解遵循协同但异步的机制。计算得出的水合反应的能垒仅略低于裂解过程的能垒,这表明两个过程均是速率限制的。通过使用三种底物类似物,进一步检查了HCHL的底物特异性。发现芳香环的对羟基对于催化反应是必需的。

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