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Chiral Hydroxylation at the Mononuclear Nonheme Fe(II) Center of 4-(S) Hydroxymandelate Synthase – A Structure-Activity Relationship Analysis

机译:4-(S)羟基扁桃酸酯合酶单核非血红素Fe(II)中心的手性羟基化-结构-活性关系分析

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摘要

(S)-Hydroxymandelate synthase (Hms) is a nonheme Fe(II) dependent dioxygenase that catalyzes the oxidation of 4-hydroxyphenylpyruvate to (S)-4-hydroxymandelate by molecular oxygen. In this work, the substrate promiscuity of Hms is characterized in order to assess its potential for the biosynthesis of chiral α-hydroxy acids. Enzyme kinetic analyses, the characterization of product spectra, quantitative structure activity relationship (QSAR) analyses and in silico docking studies are used to characterize the impact of substrate properties on particular steps of catalysis. Hms is found to accept a range of α-oxo acids, whereby the presence of an aromatic substituent is crucial for efficient substrate turnover. A hydrophobic substrate binding pocket is identified as the likely determinant of substrate specificity. Upon introduction of a steric barrier, which is suspected to obstruct the accommodation of the aromatic ring in the hydrophobic pocket during the final hydroxylation step, the racemization of product is obtained. A steady state kinetic analysis reveals that the turnover number of Hms strongly correlates with substrate hydrophobicity. The analysis of product spectra demonstrates high regioselectivity of oxygenation and a strong coupling efficiency of C-C bond cleavage and subsequent hydroxylation for the tested substrates. Based on these findings the structural basis of enantioselectivity and enzymatic activity is discussed.
机译:(S)-羟基扁桃酸酯合酶(Hms)是非血红素依赖于Fe(II)的双加氧酶,可通过分子氧催化4-羟基苯基丙酮酸氧化为(S)-4-羟基扁桃酸酯。在这项工作中,表征Hms的底物滥交,以评估其手性α-羟基酸生物合成的潜力。酶动力学分析,产物光谱表征,定量结构活性关系(QSAR)分析和计算机对接研究用于表征底物性质对特定催化步骤的影响。发现Hms接受一定范围的α-氧代酸,由此芳族取代基的存在对于有效的底物转换至关重要。疏水性底物结合袋被鉴定为底物特异性的可能决定因素。在引入空间阻隔物后,怀疑该空间阻隔物在最后的羟基化步骤中阻碍了芳香环在疏水口袋中的容纳,获得了产物的外消旋化作用。稳态动力学分析表明,Hms的周转数与底物疏水性密切相关。产物光谱的分析表明,对于被测底物,氧合作用的区域选择性高,C-C键断裂和随后的羟基化反应的偶联效率高。基于这些发现,讨论了对映选择性和酶促活性的结构基础。

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