详细信息

毛白杨环氧水解酶的异源表达及其在催化拆分手性环氧化物中的应用    

Heterogeneous Expression of Epoxide Hydrolase Genes from Populus Tomentosa and Application of the Enzyme for Biocatalytic Resolution of Chiral Epoxides

文献类型:期刊文献

中文题名:毛白杨环氧水解酶的异源表达及其在催化拆分手性环氧化物中的应用

英文题名:Heterogeneous Expression of Epoxide Hydrolase Genes from Populus Tomentosa and Application of the Enzyme for Biocatalytic Resolution of Chiral Epoxides

作者:赵晶[1];鞠鑫[1];潘江[1];李春秀[1];王敏杰[2];许建和[1]

机构:[1]华东理工大学生物反应器工程国家重点实验室,上海200237;[2]中国林业科学研究院林业研究所,北京100091

年份:2012

卷号:33

期号:2

起止页码:302

中文期刊名:催化学报

收录:CSTPCD;;Scopus;北大核心:【北大核心2011】;CSCD:【CSCD2011_2012】;

基金:This work was supported by the National Natural Science Foundation of China (20902023) and the National Basic Research Program of China (973 Program, 2009CB724706).

语种:中文

中文关键词:毛白杨;环氧水解酶;异源表达;缩水甘油苯基醚;对硝基苯乙烯氧化物;催化拆分

外文关键词:Populus tomentosa; epoxide hydrolase; heterogeneous expression; phenyl glycidyl ether; p-nitrostyrene oxide; catalytic resolution

摘要:对已公布的全基因组进行检索发现,杨树(Populus tomentosa)至少含有24个预测为可溶性环氧水解酶的基因.从中选取了7个可能的环氧水解酶基因进行克隆,通过扩增得到其中5个毛白杨(Populus tomentosa Carr)环氧水解酶基因.序列分析显示,它们与已克隆的巨大芽胞杆菌环氧水解酶的同源性仅为24%~26%.对该系列基因进行了在E.coli中的异源表达,并将得到的5个环氧水解酶(PTEH1~5)用于缩水甘油苯基醚和对硝基苯乙烯氧化物的酶促水解反应.结果发现,其中3个重组酶具有显著的环氧水解酶活性.进一步研究表明,PTEH1和PTEH2对于缩水甘油苯基醚显示了一定的反常规的(R)-选择性,而PTEH5则优先水解(S)-构型的缩水甘油苯基醚.因此,毛白杨中环氧水解酶表现出多样性.
The genome of Populus tomentosa was the first to be reported in trees.Based on the mining results of the database,a gene pool encoding 24 potential soluble epoxide hydrolases was proposed.In which,7 genes were selected in this study,and 5 genes were successfully cloned and sequenced.Sequence analysis showed that the cloned epoxide hydrolases had merely 24%-26% similarity to the newly cloned Bacillus megaterium epoxide hydrolase.Then the 5 genes were heterogeneously expressed in E.coli and used for hydrolytic reactions of two model substrates,phenyl glycidyl ether and p-nitrostyrene oxide.Epoxide hydrolysis activity was detected in 3 recombinant epoxide hydrolases,in which PTEH1 and PTEH2 showed(R)-selectivity in hydrolysis of phenyl glycidyl ether,while PTEH5 preferred to hydrolyze(S)-phenyl glycidyl ether.This work proves the diversity of epoxide hydrolases from P.tomentosa.

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