热稳定性
化学
催化作用
对映体过量
酶
基质(水族馆)
产量(工程)
还原酶
立体化学
光滑假丝酵母
对映选择合成
有机化学
白色念珠菌
植物
生物
海洋学
地质学
冶金
材料科学
作者
Lei Huang,Hongmin Ma,Hui‐Lei Yu,Jian‐He Xu
标识
DOI:10.1002/adsc.201300775
摘要
Abstract A versatile keto ester reductase Cg KR1, exhibiting a broad substrate spectrum, was obtained from Candida glabrata by genome data mining. It showed the highest activity toward an aliphatic β‐keto ester, ethyl 4‐chloro‐3‐oxobutanoate (COBE), but much lower activity toward bulkier α‐keto esters with an aromatic group, such as methyl ortho ‐chlorobenzoylformate (CBFM) and ethyl 2‐oxo‐4‐phenylbutyrate (OPBE). By rational design of the active pocket, the substrate specificity of the reductase was significantly altered and this tailor‐made reductase showed a much higher activity toward aromatic α‐keto esters (∼7‐fold increase in k cat / K m toward CBFM) and lower activity toward aliphatic keto esters (∼12‐fold decrease in k cat / K m toward COBE). Meanwhile, the thermostability of the reductase was enhanced by a consensus approach. Such improvements may yield practical catalysts for the asymmetric bioreduction of these aromatic α‐keto esters magnified image
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