Efficient production of 5-aminovalerate from l -lysine by engineered Escherichia coli whole-cell biocatalysts

2016 ◽  
Vol 134 ◽  
pp. 115-121 ◽  
Author(s):  
Xin Wang ◽  
Peipei Cai ◽  
Kequan Chen ◽  
Pingkai Ouyang
2018 ◽  
Vol 12 (4) ◽  
pp. 772-779 ◽  
Author(s):  
Shewei Hu ◽  
Qian Gao ◽  
Xin Wang ◽  
Jianming Yang ◽  
Nana Xu ◽  
...  

2020 ◽  
Vol 309 ◽  
pp. 53-58
Author(s):  
Xiao-Ling Tang ◽  
Lu-Jia Chen ◽  
Xu-Yuan Du ◽  
Bo Zhang ◽  
Zhi-Qiang Liu ◽  
...  

2016 ◽  
Vol 82 (7) ◽  
pp. 1992-2002 ◽  
Author(s):  
Pyung-Gang Lee ◽  
Joonwon Kim ◽  
Eun-Jung Kim ◽  
EunOk Jung ◽  
Bishnu Prasad Pandey ◽  
...  

ABSTRACT(S)-Equol, a gut bacterial isoflavone derivative, has drawn great attention because of its potent use for relieving female postmenopausal symptoms and preventing prostate cancer. Previous studies have reported on the dietary isoflavone metabolism of several human gut bacteria and the involved enzymes for conversion of daidzein to (S)-equol. However, the anaerobic growth conditions required by the gut bacteria and the low productivity and yield of (S)-equol limit its efficient production using only natural gut bacteria. In this study, the low (S)-equol biosynthesis of gut microorganisms was overcome by cloning the four enzymes involved in the biosynthesis fromSlackia isoflavoniconvertensintoEscherichia coliBL21(DE3). The reaction conditions were optimized for (S)-equol production from the recombinant strain, and this recombinant system enabled the efficient conversion of 200 μM and 1 mM daidzein to (S)-equol under aerobic conditions, achieving yields of 95% and 85%, respectively. Since the biosynthesis oftrans-tetrahydrodaidzein was found to be a rate-determining step for (S)-equol production, dihydrodaidzein reductase (DHDR) was subjected to rational site-directed mutagenesis. The introduction of the DHDR P212A mutation increased the (S)-equol productivity from 59.0 mg/liter/h to 69.8 mg/liter/h in the whole-cell reaction. The P212A mutation caused an increase in the (S)-dihydrodaidzein enantioselectivity by decreasing the overall activity of DHDR, resulting in undetectable activity for (R)-dihydrodaidzein, such that a combination of the DHDR P212A mutant with dihydrodaidzein racemase enabled the production of (3S,4R)-tetrahydrodaidzein with an enantioselectivity of >99%.


2020 ◽  
Vol 9 (7) ◽  
pp. 1813-1822
Author(s):  
Heyun Wu ◽  
Daoguang Tian ◽  
Xiaoguang Fan ◽  
Weiming Fan ◽  
Yue Zhang ◽  
...  

2018 ◽  
Vol 23 (4) ◽  
pp. 442-447 ◽  
Author(s):  
Yu-Mi Moon ◽  
Ranjit Gurav ◽  
Junyoung Kim ◽  
Yun-Gi Hong ◽  
Shashi Kant Bhatia ◽  
...  

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