Production of (R)-3-quinuclidinol by a whole-cell biocatalyst with high efficiency

被引:2
|
作者
Jia, Zhenhua [1 ]
Ma, Hong [1 ]
Huang, Yali [1 ]
Huang, Yuanyuan [1 ]
Ren, Pengju [1 ]
Song, Shuishan [1 ]
Hu, Meirong [2 ]
Tao, Yong [2 ]
机构
[1] Hebei Acad Sci, Inst Biol, Shijiazhuang, Hebei, Peoples R China
[2] Chinese Acad Sci, Inst Microbiol, CAS Key Lab Microbial Physiol & Metab Engn, Beijing, Peoples R China
关键词
Whole-cell biocatalyst; (R)-3-quinuclidinol; 3-quinuclidinone reductase; Kaistia granuli; glucose dehydrogenase; 3-quinuclidinone; BACILLUS-MEGATERIUM IWG3; ARCHAEON HALOFERAX-MEDITERRANEI; GLUCOSE-DEHYDROGENASE; 3-QUINUCLIDINONE REDUCTASE; ESCHERICHIA-COLI; MICROBACTERIUM-LUTEOLUM; ALCOHOL-DEHYDROGENASE; MULTISTEP SYNTHESIS; STABILITY; SPECIFICITY;
D O I
10.1080/10242422.2017.1400019
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Optically pure (R)-3-quinuclidinol [(R)-3-Qui] is widely used as a chiral building block for producing various antimuscarinic agents. An asymmetric bioreduction approach using 3-quinuclidinone reductases is an effective way to produce (R)-3-Qui. In this study, a biocatalyst for producing (R)-3-Qui was developed by using Escherichia coli that coexpressed Kaistia granuli (KgQR) and mutant glucose dehydrogenase (GDH). KgQR catalyses the synthesis of (R)-3-Qui through the efficient reduction of 3-quinuclidinone. The specific activity of recombinant KgQR was 254U/mg, and the Michaelis-Menten constant (K-m) for 3-quinuclidinone was 0.51mM. The thermal stability of KgQR was relatively high compared with ArQR. Approximately 73% of the residual activity remained after incubation in 0.2M potassium phosphate buffer (KPB) (pH 7.0) for 8h at 30 degrees C. In addition, 80% residual activity remained for the double-mutant GDH (Q252L and E170K) after incubation in a buffer (pH 7.0) for 8h at 30 and 40 degrees C. 3-Quinuclidinone (242g/L) can be reduced to (R)-3-Qui in 3h by coexpressing KgQR and mutant GDH in E. coli. The conversion rate reached 80.6g/L/h, which is the highest reported to date. The results demonstrates that this whole-cell biocatalyst will have a great potential in industrial manufacturing.
引用
收藏
页码:316 / 323
页数:8
相关论文
共 50 条
  • [41] Efficient production of lactobionic acid using genetically engineered Pseudomonas taetrolens as a whole-cell biocatalyst
    Oh, Yu-Ri
    Jang, Young-Ah
    Hong, Soon Ho
    Han, Jeong Jun
    Eom, Gyeong Tae
    ENZYME AND MICROBIAL TECHNOLOGY, 2020, 141
  • [42] Effective synthesis of Rebaudioside A by whole-cell biocatalyst Pichia pastoris
    Chen, Meiqi
    Zeng, Xin
    Zhu, Qingjuan
    Wang, Denggang
    Han, Shuangyan
    Liang, Shuli
    Lin, Ying
    Biochemical Engineering Journal, 2021, 175
  • [43] Development of a whole-cell biocatalyst with NADPH regeneration system for biosulfoxidation
    Zhai, Xiao-Hong
    Ma, Yuan-Hui
    Lai, Dun-Yue
    Zhou, Shuo
    Chen, Zhen-Ming
    JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2013, 40 (08) : 797 - 803
  • [44] Endocytosing Escherichia coil as a Whole-Cell Biocatalyst of Fatty Acids
    Shin, Jonghyeok
    Yu, Jiwon
    Park, Myungseo
    Kim, Chakhee
    Kim, Hooyeon
    Park, Yunjeong
    Ban, Choongjin
    Seydametova, Emine
    Song, Young-Ha
    Shin, Chul-Soo
    Chung, Kyung-Hwun
    Woo, Ji-Min
    Chung, Hyunwoo
    Park, Jin-Byung
    Kweon, Dae-Hyuk
    ACS SYNTHETIC BIOLOGY, 2019, 8 (05): : 1055 - 1066
  • [45] Wickerhamomyces subpelliculosus as whole-cell biocatalyst for stereoselective bioreduction of ketones
    Bodai, Viktoria
    Nagy-Gyor, Laszlo
    Orkenyi, Robert
    Molnar, Zsofia
    Kohari, Szabolcs
    Erdelyi, Balazs
    Nagymate, Zsuzsanna
    Romsics, Csaba
    Paizs, Csaba
    Poppe, Laszlo
    Hornyanszky, Gabor
    JOURNAL OF MOLECULAR CATALYSIS B-ENZYMATIC, 2016, 134 : 206 - 214
  • [46] A new whole-cell biocatalyst for sulfur dioxide filtering and degradation
    Haghighatian, Sara
    Mazarei, Elham
    Doroodmand, Mohammad Mahdi
    Klein, Axel
    Memarpoor-Yazdi, Mina
    BIORESOURCE TECHNOLOGY, 2020, 314 (314)
  • [47] Effective synthesis of Rebaudioside A by whole-cell biocatalyst Pichia pastoris
    Chen, Meiqi
    Zeng, Xin
    Zhu, Qingjuan
    Wang, Denggang
    Han, Shuangyan
    Liang, Shuli
    Lin, Ying
    BIOCHEMICAL ENGINEERING JOURNAL, 2021, 175
  • [48] RECOMBINANT WHOLE-CELL PENICILLIN ACYLASE BIOCATALYST - PRODUCTION, CHARACTERIZATION AND USE IN THE SYNTHESIS AND HYDROLYSIS OF ANTIBIOTICS
    OSPINA, S
    MERINO, E
    RAMIREZ, OT
    LOPEZMUNGUIA, A
    BIOTECHNOLOGY LETTERS, 1995, 17 (06) : 615 - 620
  • [49] Pretreatment of swine manure containing β-lactam antibiotics with whole-cell biocatalyst to improve biogas production
    Liu, Minrui
    Ni, Hongyuhang
    Yang, Ling
    Chen, Gang
    Yan, Xiaojun
    Leng, Xiaoyun
    Liu, Pu
    Li, Xiangkai
    JOURNAL OF CLEANER PRODUCTION, 2019, 240
  • [50] Systems biotechnology - Rational whole-cell biocatalyst and bioprocess design
    Kuhn, Daniel
    Blank, Lars M.
    Schmid, Andreas
    Buehler, Bruno
    ENGINEERING IN LIFE SCIENCES, 2010, 10 (05): : 384 - 397