红球菌
腈水合酶
四级结构
重组DNA
生物转化
核糖体结合位点
生物化学
生物
大肠杆菌
酶
化学
红球菌
基因
信使核糖核酸
蛋白质亚单位
翻译(生物学)
发酵
作者
Lan Yao,Xiaohuan Zhang,Zhongmei Liu,Li Zhou,Ruihua Shen,Xianping Zhong,Wenjing Cui,Zhemin Zhou
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2017-06-23
卷期号:12 (6): e0179833-e0179833
被引量:22
标识
DOI:10.1371/journal.pone.0179833
摘要
Nitrile hydratase (NHase) from Rhodococcus rhodochrous J1 is widely used for industrial production of acrylamide and nicotinamide. However, the two types of NHases (L-NHase and H-NHase) from R. rhodochrous J1 were only slightly expressed in E. coli by routine methods, which limits the comprehensive and systematic characterization of the enzyme properties. We successfully expressed the two types of recombinant NHases in E. coli by codon-optimization, engineering of Ribosome Binding Site (RBS) and spacer sequences. The specific activity of the purified L-NHase and H-NHase were 400 U/mg and 234 U/mg, respectively. The molecular mass of L-NHase and H-NHase was identified to be 94 kDa and 504 kDa, respectively, indicating that the quaternary structure of the two types of NHases was the same as those in R. rhodochrous J1. H-NHase exhibited higher substrate and product tolerance than L-NHase. Moreover, higher activity and shorter culture time were achieved in recombinant E. coli, and the whole cell catalyst of recombinant E. coli harboring H-NHase has equivalent efficiency in tolerance to the high-concentration product relative to that in R. rhodochrous J1. These results indicate that biotransformation of nitrile by R. rhodochrous J1 represents a potential alternative to NHase-producing E. coli.
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