饱和突变
脂肪酶
化学
突变体
酶动力学
动力学分辨率
突变
大肠杆菌
产量(工程)
酶
立体化学
定点突变
野生型
生物化学
活动站点
催化作用
对映选择合成
基因
冶金
材料科学
作者
Ren‐Chao Zheng,Li-Tao Ruan,Hong-Ye Ma,Xiaoling Tang,Yu‐Guo Zheng
标识
DOI:10.1016/j.bej.2016.05.007
摘要
Abstract Thermomyces lanuginosus lipase (TLL) variants with enhanced activity for kinetic resolution of 2-carboxyethyl-3-cyano-5-methylhexanoic acid ethyl ester (CNDE) were constructed by site-saturation mutagenesis. Single mutant S83T and double mutant S58L/S83T exhibited 2.69 and 5.46-fold improvement in their specific activity for CNDE over the wild type TLL. The catalytic efficiency of S83T and S58L/S83T mutants were significantly increased, with k cat / K m values of 11.3 and 27.3 mM −1 min −1 , which was 2.97 and 7.18 times higher than that of the wild type. The whole cell catalysis of 3 M CNDE by E sch e richia coli harboring mutant S58L/S83T (5% w/v) resulted in 44.8% yield and >96% ee P within 24 h. These encouraging results demonstrated the great potential of the modified TLL for efficient production of ( S )-2-carboxyethyl-3-cyano-5-methylhexaoic acid used as chiral intermediate for pregabalin.
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