首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Gene Cloning and Characterization of Two NADH-Dependent 3-Quinuclidinone Reductases from Microbacterium luteolum JCM 9174
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Gene Cloning and Characterization of Two NADH-Dependent 3-Quinuclidinone Reductases from Microbacterium luteolum JCM 9174

机译:黄lut微细菌JCM 9174的两个NADH依赖性3-奎宁环酮还原酶的基因克隆与表征

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摘要

We used the resting-cell reaction to screen approximately 200 microorganisms for biocatalysts which reduce 3-quinuclidinone to optically pure (R)-(−)-3-quinuclidinol. Microbacterium luteolum JCM 9174 was selected as the most suitable organism. The genes encoding the protein products that reduced 3-quinuclidinone were isolated from M. luteolum JCM 9174. The bacC gene, which consists of 768 nucleotides corresponding to 255 amino acid residues and is a constituent of the bacilysin synthetic gene cluster, was amplified by PCR based on homology to known genes. The qnr gene consisted of 759 nucleotides corresponding to 252 amino acid residues. Both enzymes belong to the short-chain alcohol dehydrogenase/reductase (SDR) family. The genes were expressed in Escherichia coli as proteins which were His tagged at the N terminus, and the recombinant enzymes were purified and characterized. Both enzymes showed narrow substrate specificity and high stereoselectivity for the reduction of 3-quinuclidinone to (R)-(−)-3-quinuclidinol.
机译:我们使用静息细胞反应筛选了大约200种微生物作为生物催化剂,这些催化剂将3-奎宁环酮还原为光学纯净的(R)-(-)-3-奎宁环醇。黄体微细菌JCM 9174被选为最合适的生物。从卢氏沼虾JCM 9174中分离出编码还原3-奎宁环酮的蛋白质产物的基因。通过PCR扩增了bacC基因,该基因由768个核苷酸组成,对应于255个氨基酸残基,是杆菌素合成基因簇的组成部分。基于与已知基因的同源性。 qnr基因由759个核苷酸组成,对应于252个氨基酸残基。这两种酶均属于短链醇脱氢酶/还原酶(SDR)家族。这些基因在大肠杆菌中表达为在N末端带有His标签的蛋白质,并纯化和鉴定了重组酶。两种酶均显示出较窄的底物特异性和较高的立体选择性,可将3-奎宁环酮还原为(R)-(-)-3-奎宁环醇。

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