Engineering yeast for high-level production of diterpenoid sclareol
Journal article, 2023

The diterpenoid sclareol is an industrially important precursor for alternative sustainable supply of ambergris. However, its current production from plant extraction is neither economical nor environmental-friendly, since it requires laborious and cost-intensive purification procedures and plants cultivation is susceptible to environmental factors. Engineering cell factories for bio-manufacturing can enable sustainable production of natural products. However, stringent metabolic regulation poses challenges to rewire cellular metabolism for overproduction of compounds of interest. Here we used a modular approach to globally rewire the cellular metabolism for improving sclareol production to 11.4 g/L in budding yeast Saccharomyces cerevisiae, the highest reported diterpenoid titer in microbes. Metabolic flux analysis showed that modular balanced metabolism drove the metabolic flux toward the biosynthesis of targeted molecules, and transcriptomic analysis revealed that the expression of central metabolism genes was shaped for a new balanced metabolism, which laid a foundation in extensive metabolic engineering of other microbial species for sustainable bio-production.

Author

Xuan Cao

Chinese Academy of Sciences

Jinan Microecological Biomedicine Shandong Laboratory

Wei Yu

Chinese Academy of Sciences

Yu Chen

Chalmers, Life Sciences, Systems and Synthetic Biology

Shan Yang

Chinese Academy of Sciences

Zongbao K. Zhao

Chinese Academy of Sciences

Jens B Nielsen

Chalmers, Life Sciences, Systems and Synthetic Biology

Hongwei Luan

Chinese Academy of Sciences

Yongjin Zhou

Chinese Academy of Sciences

Metabolic Engineering

1096-7176 (ISSN) 1096-7184 (eISSN)

Vol. 75 19-28

Subject Categories

Production Engineering, Human Work Science and Ergonomics

Other Environmental Engineering

Energy Systems

DOI

10.1016/j.ymben.2022.11.002

PubMed

36371032

More information

Latest update

11/24/2022