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Purification and characterization of an enantioselective carbonyl reductase from Candida viswanathii MTCC 5158

机译:粘念珠菌MTCC 5158的对映选择性羰基还原酶的纯化和表征

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A highly enantioselective carbonyl reductase produced by a new yeast strain Candida viswanathii MTCC 5158, which was isolated using an acetophenone enriched medium, has been purified and characterized. The enzyme has been purified to near homogeneity using ammonium sulfate precipitation, ion exchange and gel filtration chromatography. The molecular properties of the carbonyl reductase suggested the native enzyme to be tetrameric, with an apparent molecular weight of 120 kDa, the monomer being about 29 kDa. Acety 1 aryI ketones were found to be the preferred substrates for the enzyme and the best reaction was the enantioselective reduction of acetophenone. The enzyme yielded (S)-alcohol in preference to (tf)-alcohol and utilized NADH, but not NADPH as the cofactor. The purified enzyme exhibited maximum enzyme activity at pH 7.0 and 60 C. The enzyme retained about 80% of its activity after 7 h incubation at 25 °C in sodium phosphate buffer (50 mM, pH 7.0). The addition of reducing agents like dithiothreitol and β-mercaptoethanol enhanced the enzyme activity while organic solvents, detergents and chaotropic agents had deleterious effect on enzyme activity. Metal chelating agents like hydroxyquinoline and o-phenanthroline have significant effect on enzyme activity suggesting that the carbonyl reductase required the presence of a tightly bound metal ion for activity or stability. The maximum reaction rate (V_(max)) and apparent Michaelis-Menten constant (K_m) for acetophenone and NADH were 59.21 μmol/(min mg) protein and 0.153 mM and 82.64 μmol/(min mg) protein and 0.157 mM at a concentration range of 0.2-2 mM acetophenone (NADH fixed at 0.5 mM) and 0.1-0.5 mM NADH (acetophenone fixed at 2 mM), respectively.
机译:由新的酵母菌株念珠菌假丝酵母念珠菌MTCC 5158产生的高度对映选择性羰基还原酶已被纯化和鉴定,该菌株使用富含苯乙酮的培养基分离。该酶已使用硫酸铵沉淀,离子交换和凝胶过滤色谱法纯化至接近均一。羰基还原酶的分子特性表明该天然酶为四聚体,表观分子量为120 kDa,单体约为29 kDa。发现乙酰1酮是该酶的首选底物,最好的反应是对苯乙酮的对映选择性还原。该酶优先于(tf)醇生成(S)-醇,并利用NADH,但不使用NADPH作为辅因子。纯化的酶在pH 7.0和60℃时表现出最大的酶活性。在25°C的磷酸钠缓冲液(50 mM,pH 7.0)中孵育7 h后,该酶保留其活性的约80%。加入还原剂如二硫苏糖醇和β-巯基乙醇可增强酶的活性,而有机溶剂,去污剂和离液剂对酶的活性则具有有害作用。金属螯合剂(例如羟基喹啉和邻菲咯啉)对酶的活性具有显着影响,表明羰基还原酶需要存在紧密结合的金属离子才能获得活性或稳定性。苯乙酮和NADH的最大反应速率(V_(max))和表观Michaelis-Menten常数(K_m)为59.21μmol/(min mg)蛋白质和0.153 mM和82.64μmol/(min mg)蛋白质和0.157 mM范围分别为0.2-2 mM苯乙酮(NADH固定在0.5 mM)和0.1-0.5 mM NADH(苯乙酮固定在2 mM)。

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