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Development of a growth-coupled selection platform for directed evolution of heme biosynthetic enzymes in Corynebacterium glutamicum.
Zhou, Yingyu; Chen, Jiuzhou; Pu, Wei; Cai, Ningyun; Che, Bin; Yang, Jinxing; Wang, Mengmeng; Zhong, Shasha; Zuo, Xingtao; Wang, Depei; Wang, Yu; Zheng, Ping; Sun, Jibin.
Affiliation
  • Zhou Y; College of Biotechnology, Tianjin University of Science and Technology, Tianjin, China.
  • Chen J; Key Laboratory of Engineering Biology for Low-Carbon Manufacturing, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, China.
  • Pu W; Key Laboratory of Engineering Biology for Low-Carbon Manufacturing, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, China.
  • Cai N; National Technology Innovation Center of Synthetic Biology, Tianjin, China.
  • Che B; Key Laboratory of Engineering Biology for Low-Carbon Manufacturing, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, China.
  • Yang J; National Technology Innovation Center of Synthetic Biology, Tianjin, China.
  • Wang M; College of Biotechnology, Tianjin University of Science and Technology, Tianjin, China.
  • Zhong S; Key Laboratory of Engineering Biology for Low-Carbon Manufacturing, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, China.
  • Zuo X; Key Laboratory of Engineering Biology for Low-Carbon Manufacturing, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, China.
  • Wang D; National Technology Innovation Center of Synthetic Biology, Tianjin, China.
  • Wang Y; Key Laboratory of Engineering Biology for Low-Carbon Manufacturing, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, China.
  • Zheng P; School of Biology and Biological Engineering, South China University of Technology, Guangzhou, China.
  • Sun J; College of Biotechnology, Tianjin University of Science and Technology, Tianjin, China.
Front Bioeng Biotechnol ; 11: 1236118, 2023.
Article de En | MEDLINE | ID: mdl-37654705
Heme is an important tetrapyrrole compound, and has been widely applied in food and medicine industries. Although microbial production of heme has been developed with metabolic engineering strategies during the past 20 years, the production levels are relatively low due to the multistep enzymatic processes and complicated regulatory mechanisms of microbes. Previous studies mainly adopted the strategies of strengthening precursor supply and product transportation to engineer microbes for improving heme biosynthesis. Few studies focused on the engineering and screening of efficient enzymes involved in heme biosynthesis. Herein, a growth-coupled, high-throughput selection platform based on the detoxification of Zinc-protoporphyrin IX (an analogue of heme) was developed and applied to directed evolution of coproporphyrin ferrochelatase, catalyzing the insertion of metal ions into porphyrin ring to generate heme or other tetrapyrrole compounds. A mutant with 3.03-fold increase in k cat/K M was selected. Finally, growth-coupled directed evolution of another three key enzymes involved in heme biosynthesis was tested by using this selection platform. The growth-coupled selection platform developed here can be a simple and effective strategy for directed evolution of the enzymes involved in the biosynthesis of heme or other tetrapyrrole compounds.
Mots clés

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Langue: En Journal: Front Bioeng Biotechnol Année: 2023 Type de document: Article Pays d'affiliation: Chine Pays de publication: Suisse

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Langue: En Journal: Front Bioeng Biotechnol Année: 2023 Type de document: Article Pays d'affiliation: Chine Pays de publication: Suisse