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首页> 外文期刊>Journal of Biotechnology >Cloning of an epoxide hydrolase-encoding gene from Aspergillus niger M200, overexpression in E. coli, and modification of activity and enantioselectivity of the enzyme by protein engineering
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Cloning of an epoxide hydrolase-encoding gene from Aspergillus niger M200, overexpression in E. coli, and modification of activity and enantioselectivity of the enzyme by protein engineering

机译:从黑曲霉M200克隆环氧水解酶编码基因,在大肠杆菌中过表达,以及通过蛋白质工程修饰酶的活性和对映选择性

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摘要

The gene encoding an epoxide hydrolase from Aspergillus niger M200 has been cloned and its sequence determined. The gene is interrupted by seven introns, one exon being only nine nucleotides long. The non-coding 5'- and 3'-regions of the mRNA are composed of 47 and 76 nucleotides, respectively. Overexpression of the fungal epoxide hydrolase in E. coli TOP10 has led to a 15-fold increase in specific activity (compared to the wild-type strain). Saturation mutagenesis at codon 217 resulted in the discovery of nine enzyme variants showing in several cases profound differences in activity and enantioselectivity towards various epoxides when compared to the data of the wild-type enzyme. The site 217 is located at the entrance of the tunnel that provides the substrate with access to the active site. The exchange of Ala at this position for Cys has led to a doubled enantioselectivity (E-value of 5.0) towards benzyl glycidyl ether. The same substitution resulted in a threefold-enhanced activity of the enzyme towards allyl glycidyl ether and styrene oxide without affecting enantioselectivity. The variant A217L showed an enhanced enantioselectivity towards tert-butyl glycidyl ether reaching an E-value of 100 (from 60 for the wild-type enzyme). Replacement of A217 by Val has led to higher activity towards allyl glycidyl ether by a factor of six. The substitutions Ala-->Glu and Ala-->Gln increased the enantioselectivity towards allyl glycidyl ether and styrene oxide by over 50% to E-values of 10 and 16, respectively. The study underlines that single amino acid exchanges in the substrate tunnel region can lead to significant improvements in enantioselectivity and activity of the epoxide hydrolase from A. niger M200.
机译:已经克隆了来自黑曲霉M200的编码环氧水解酶的基因,并确定了其序列。该基因被七个内含子打断,一个外显子只有九个核苷酸长。 mRNA的非编码5'和3'区域分别由47和76个核苷酸组成。真菌环氧化物水解酶在大肠杆菌TOP10中的过表达导致比活性提高了15倍(与野生型菌株相比)。密码子217处的饱和诱变导致发现了9种酶变体,与野生型酶的数据相比,在多种情况下,这些变体在活性和对多种环氧化物的对映选择性方面表现出极大的差异。部位217位于隧道的入口处,该通道为基板提供了进入活动部位的通道。在此位置,Ala交换为Cys导致对苄基缩水甘油醚的对映选择性加倍(E值为5.0)。相同的取代导致酶对烯丙基缩水甘油醚和氧化苯乙烯的活性增强了三倍,而没有影响对映选择性。变体A217L对叔丁基缩水甘油醚的对映选择性增强,达到E值100(野生型酶从60)。用Val替代A217导致对烯丙基缩水甘油醚的活性提高了六倍。取代Ala-> Glu和Ala-> Gln使烯丙基缩水甘油醚和氧化苯乙烯的对映选择性提高了50%以上,分别达到E值10和16。该研究强调,底物通道区域中的单个氨基酸交换可导致黑曲霉M200的环氧水解酶的对映选择性和活性显着提高。

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