Fine-tuning of p-coumaric acid synthesis to increase (2S)-naringenin production in yeast
Journal article, 2023

(2S)-Naringenin is a key precursor for biosynthesis of various high-value flavonoids and possesses a variety of nutritional and pharmaceutical properties on human health. Systematic optimization approaches have been employed to improve (2S)-naringenin production in different microbial hosts. However, very few studies have focused on the spatiotemporal distribution of (2S)-naringenin and the related pathway intermediate p-coumaric acid, which is an important factor for efficient production. Here, we first optimized the (2S)-naringenin biosynthetic pathway by alleviating the bottleneck downstream of p-coumaric acid and increasing malonyl-CoA supply, which improved (2S)-naringenin production but significant accumulation of p-coumaric acid still existed extracellularly. We thus established a dual dynamic control system through combining a malonyl-CoA biosensor regulator and an RNAi strategy, to autonomously control the synthesis of p-coumaric acid with the supply of malonyl-CoA. Furthermore, screening potential transporters led to identification of Pdr12 for improved (2S)-naringenin production and reduced accumulation of p-coumaric acid. Finally, a titer of 2.05 g/L (2S)-naringenin with negligible accumulation of p-coumaric acid was achieved in a fed batch fermentation. Our work highlights the importance of systematic control of pathway intermediates for efficient microbial production of plant natural products.

Natural products

Intermediate distribution

Synthetic biology

Metabolic engineering

Dynamic control

Author

Jiwei Mao

Chalmers, Life Sciences, Systems and Synthetic Biology

Marta Tous Mohedano

Chalmers, Life Sciences, Systems and Synthetic Biology

Jing Fu

Chalmers, Life Sciences, Systems and Synthetic Biology

Xiaowei Li

Chalmers, Life Sciences, Systems and Synthetic Biology

Quanli Liu

Chalmers, Life Sciences, Systems and Synthetic Biology

Jens B Nielsen

Chalmers, Life Sciences, Systems and Synthetic Biology

BioInnovation Institute

Verena Siewers

Chalmers, Life Sciences, Systems and Synthetic Biology

Yun Chen

Chalmers, Life Sciences, Systems and Synthetic Biology

Metabolic Engineering

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

Vol. 79 192-202

Bioinformatics Services for Data-Driven Design of Cell Factories and Communities (DD-DeCaF)

European Commission (EC) (EC/H2020/686070), 2016-03-01 -- 2020-02-28.

Systems metabolic engineering of yeast for production of flavonoids

Novo Nordisk Foundation (NNF18OC0034844), 2019-01-01 -- 2021-12-31.

Subject Categories (SSIF 2011)

Biological Sciences

DOI

10.1016/j.ymben.2023.08.003

PubMed

37611820

More information

Latest update

1/15/2024