假丝酵母病
苯乙酮
醇脱氢酶
对映体药物
生物催化
辅因子
化学
氧化还原酶
NAD+激酶
醇氧化还原酶
脱氢酶
立体化学
酒
酶
有机化学
催化作用
反应机理
对映选择合成
生物
白色念珠菌
遗传学
作者
Jerrina Pinto,Anju Chadha,Sathyanarayana N. Gummadi
标识
DOI:10.1016/j.bej.2022.108406
摘要
Alcohol dehydrogenases (ADHs) catalyses reversible reduction of carbonyl group to its corresponding alcohols and have been widely employed as versatile biocatalyst due to its high enantioselectivity to produce chiral alcohols. In this study, the (S) - specific alcohol dehydrogenase (S-ADH) enzyme was purified from Candida parapsilosis ATCC 7330. It asymmetrically reduced acetophenone to (S)-1-phenylethanol with > 99% ee with an effective substrate coupled approach for cofactor recycling. In the reverse reaction, i.e., oxidation of 1-phenylethanol, S-ADH produced (R)-1-phenylethanol with > 99% ee via kinetic resolution. S-ADH is a zinc dependent medium chain dehydrogenase/reductase. It was found to be a tetramer in nature with subunit molecular mass of 40 kDa catalysing oxidation and reduction reactions only using NAD+ and NADH as the cofactors respectively with higher affinity for NAD+. Further biochemical characterisation indicated that His and Cys residues play a crucial role in the enzymatic catalysis and requires a reducing environment at the active site. S-ADH was stable at pH 6.0 in reducing acetophenone and pH 8.0 in oxidising 1-phenylethanol at 45 °C with the t1/2 of 6.8 h and 9.0 h respectively. Therefore, purified S-ADH would be a useful biocatalyst in the synthesis of enantiopure (S)- and (R)-1-phenylethanol which are used in the fragrance preparation.
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