醇脱氢酶
酮
化学
辅因子
NAD+激酶
生物催化
丙酮
氧化还原
对映选择合成
酒
酒精氧化
酶
组合化学
脱氢酶
位阻效应
有机化学
立体化学
催化作用
反应机理
作者
Wolfgang Kroutil,Harald Mang,Klaus Edegger,Kurt Faber
标识
DOI:10.1016/j.cbpa.2004.02.005
摘要
To improve the efficiency and applicability of biocatalytic redox-reactions for asymmetric ketone-reduction and enantioselective alcohol-oxidation catalyzed by nicotinamide-dependent dehydrogenases/reductases, several achievements for cofactor-recycling have been made during the last two years. First, the use of hydrogenases for NADPH recycling in a two enzyme system. Second, preparative transformations with alcohol dehydrogenases coupled with NADH oxidases for NAD+/NADP+ recycling. Third, an exceptional chemo-stable alcohol dehydrogenase can efficiently use i-propanol and acetone as cosubstrates for reduction and oxidation, respectively, in a single-enzyme system. Novel carbonyl reductases and dehydrogenases derived from plant cells are particularly suited for sterically demanding substrates.
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