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Activity of Yeast Alcohol Dehydrogenases on Benzyl Alcohols and Benzaldehydes. Characterization of ADH1 from Saccharomyces carlsbergensis and Transition State Analysis

机译:酵母醇脱氢酶对苄醇和苯甲醛的活性。啤酒酵母ADH1的表征及过渡态分析

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摘要

The substrate specificities of yeast alcohol dehydrogenases I and II from Saccharomyces cerevisiae (SceADH1 and SceADH2) and Saccharomyces carlsbergensis (ScbADH1) were studied. For this work, the gene for the S. carlsbergensis ADH1 was cloned, sequenced and expressed. The amino acid sequence of ScbADH1 differs at four positions as compared to SceADH1, including substitutions of two glutamine residues with glutamic acid residues, and has the same sequence as the commercial yeast enzyme, which apparently is prepared from S. carlsbergensis. The electrophoretic mobilities of ScbADH1, SceADH2 and commercial ADH are similar. The kinetics and specificities of ScbADH1 and SceADH1 acting on branched, long-chain and benzyl alcohols are very similar, but the catalytic efficiency of SceADH2 is about 10 to 100-fold higher on these substrates. A three dimensional structure of SceADH1 shows that the substrate binding pocket has Met-270, whereas SceADH2 has Leu-270, which allows larger substrates to bind. The reduction of a series of p-substituted benzaldehydes catalyzed by SceADH2 is significantly enhanced by electron-withdrawing groups, whereas the oxidation of p-substituted aromatic alcohols may be only slightly affected by the substituents. The substituent effects on catalysis generally reflect the effects on the equilibrium constant for the reaction, where electron-withdrawing substituents favor alcohol. The results are consistent with a transition state that is electronically similar to the alcohol, supporting previous results obtained with commercial yeast ADH.
机译:研究了酿酒酵母(SceADH1和SceADH2)和嘉士伯酵母(ScbADH1)的酵母酒精脱氢酶I和II的底物特异性。为了这项工作,克隆,测序和表达了S. carlsbergensis ADH1的基因。与SceADH1相比,ScbADH1的氨基酸序列在四个位置上不同,包括用谷氨酸残基取代两个谷氨酰胺残基,并且具有与商业酵母酶相同的序列,该酶显然是由S.carlsbergensis制备的。 ScbADH1,SceADH2和市售ADH的电泳迁移率相似。 ScbADH1和SceADH1在支链,长链和苄醇上的动力学和特异性非常相似,但SceADH2在这些底物上的催化效率高约10至100倍。 SceADH1的三维结构显示底物结合袋具有Met-270,而SceADH2具有Leu-270,后者允许更大的底物结合。吸电子基团显着增强了 Sce ADH2催化的一系列 p -取代的苯甲醛的还原,而 p -的氧化取代的芳族醇可能仅受取代基的轻微影响。取代基对催化的作用通常反映了对反应平衡常数的影响,其中吸电子取代基有利于醇。结果与电子上类似于醇的过渡态相符,支持了先前用商业酵母ADH获得的结果。

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