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Metabolic Engineering of Escherichia coli for Production of alpha-Santalene, a Precursor of Sandalwood Oil
- Wang, Yan;
- Zhou, Shenting;
- Liu, Qian;
- Jeong, Seong-Hee;
- Zhu, Liyan;
- ... Kim, Seon-Won;
- 외 4명
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13SCOPUS
13초록
alpha-Santalene belongs to a class of natural compounds with many physiological functions and medical applications. Advances in metabolic engineering enable non-native hosts (e.g., Escherichia coli) to produce alpha-santalene, the precursor of sandalwood oil. However, imbalances in enzymatic activity often result in a metabolic burden on hosts and repress the synthetic capacity of the desired product. In this work, we manipulated ribosome binding sites (RBSs) to optimize an alpha-santalene synthetic operon in E. coli, and the best engineered E. coli NA-IS3D strain could produce alpha-santalene at a titer of 412 mg.L-1. Concerning the observation of the inverse correlation between indole synthesis and alpha-santalene production, this study speculated that indoleassociated amino acid metabolism would be competitive to the synthesis of alpha-santalene rather than indole toxicity itself. The deletion of tnaA could lead to a 1.5-fold increase in alpha-santalene production to a titer of 599 mg.L-1 in E. coli tnaA(-) NA-IS3D. Our results suggested that the optimization of RBS sets of the synthetic module and attenuation of the competitive pathway are promising approaches for improving the production of terpenoids including alpha-santalene.
키워드
- 제목
- Metabolic Engineering of Escherichia coli for Production of alpha-Santalene, a Precursor of Sandalwood Oil
- 저자
- Wang, Yan; Zhou, Shenting; Liu, Qian; Jeong, Seong-Hee; Zhu, Liyan; Yu, Xiangming; Zheng, Xiaojian; Wei, Gongyuan; Kim, Seon-Won; Wang, Chonglong
- 발행일
- 2021-11
- 유형
- Article
- 권
- 69
- 호
- 44
- 페이지
- 13135 ~ 13142