Metabolic engineering of Corynebacterium glutamicum for the production of glutaric acid, a C5 dicarboxylic acid platform chemical

  • Kim, Hee Taek
  • Khang, Tae Uk
  • Baritugo, Kei-Anne
  • Hyun, Sung Min
  • Kang, Kyoung Hee
  • ... Oh, Min-Kyu
  • 외 8명
Citations

WEB OF SCIENCE

58
Citations

SCOPUS

64

초록

Corynebacterium glutamicum was metabolically engineered for the production of glutaric acid, a C5 dicarboxylic acid that can be used as platform building block chemical for nylons and plasticizers. C. glutamicum gabT and gabD genes and Pseudomonas putida davT and davD genes encoding 5-aminovalerate transaminase and glutarate semialdehyde dehydrogenase, respectively, were examined in C. glutamicum for the construction of a glutaric acid biosynthesis pathway along with P. putida davB and davA genes encoding lysine 2-monooxygenase and delta-aminovaleramidase, respectively. The glutaric acid biosynthesis pathway constructed in recombinant C. glutamicum was engineered by examining strong synthetic promoters PH30 and PH36, C. glutamicum codon-optimized davTDBA genes, and modification of davB gene with an N-terminal His(6)-tag to improve the production of glutaric acid. It was found that use of N-terminal His(6)-tagged DavB was most suitable for the production of glutaric acid from glucose. Fed-batch fermentation using the final engineered C. glutamicum H30_GAHis strain, expressing davTDA genes along with davB fused with His(6)-tag at N-terminus could produce 24.5 g/L of glutaric acid with low accumulation of L-lysine (1.7 g/L), wherein 5-AVA accumulation was not observed during fermentation.

키워드

Glutaric acidL-LysineCorynebacterium glutamicumdavTDBACodon optimizationHis(6)-tagFed-batch fermentationBIO-BASED PRODUCTIONESCHERICHIA-COLIPSEUDOMONAS-PUTIDALYSINE CATABOLISMEXPRESSIONBIOSYNTHESIS5-AMINOVALERATEDEHYDROGENASEBIOTECHNOLOGYPATHWAY
제목
Metabolic engineering of Corynebacterium glutamicum for the production of glutaric acid, a C5 dicarboxylic acid platform chemical
저자
Kim, Hee TaekKhang, Tae UkBaritugo, Kei-AnneHyun, Sung MinKang, Kyoung HeeJung, Sol HeeSong, Bong KeunPark, KyungmoonOh, Min-KyuKim, Gi BaeKim, Hyun UkLee, Sang YupPark, Si JaeJoo, Jeong Chan
DOI
10.1016/j.ymben.2018.08.007
발행일
2019-01
유형
Article
저널명
Metabolic Engineering
51
페이지
99 ~ 109