Unknown

Dataset Information

0

Increased CO2 fixation enables high carbon-yield production of 3-hydroxypropionic acid in yeast.


ABSTRACT: CO2 fixation plays a key role to make biobased production cost competitive. Here, we use 3-hydroxypropionic acid (3-HP) to showcase how CO2 fixation enables approaching theoretical-yield production. Using genome-scale metabolic models to calculate the production envelope, we demonstrate that the provision of bicarbonate, formed from CO2, restricts previous attempts for high yield production of 3-HP. We thus develop multiple strategies for bicarbonate uptake, including the identification of Sul1 as a potential bicarbonate transporter, domain swapping of malonyl-CoA reductase, identification of Esbp6 as a potential 3-HP exporter, and deletion of Uga1 to prevent 3-HP degradation. The combined rational engineering increases 3-HP production from 0.14 g/L to 11.25 g/L in shake flask using 20 g/L glucose, approaching the maximum theoretical yield with concurrent biomass formation. The engineered yeast forms the basis for commercialization of bio-acrylic acid, while our CO2 fixation strategies pave the way for CO2 being used as the sole carbon source.

SUBMITTER: Qin N 

PROVIDER: S-EPMC10881976 | biostudies-literature | 2024 Feb

REPOSITORIES: biostudies-literature

altmetric image

Publications

Increased CO<sub>2</sub> fixation enables high carbon-yield production of 3-hydroxypropionic acid in yeast.

Qin Ning N   Li Lingyun L   Wan Xiaozhen X   Ji Xu X   Chen Yu Y   Li Chaokun C   Liu Ping P   Zhang Yijie Y   Yang Weijie W   Jiang Junfeng J   Xia Jianye J   Shi Shuobo S   Tan Tianwei T   Nielsen Jens J   Chen Yun Y   Liu Zihe Z  

Nature communications 20240221 1


CO<sub>2</sub> fixation plays a key role to make biobased production cost competitive. Here, we use 3-hydroxypropionic acid (3-HP) to showcase how CO<sub>2</sub> fixation enables approaching theoretical-yield production. Using genome-scale metabolic models to calculate the production envelope, we demonstrate that the provision of bicarbonate, formed from CO<sub>2</sub>, restricts previous attempts for high yield production of 3-HP. We thus develop multiple strategies for bicarbonate uptake, incl  ...[more]

Similar Datasets

| S-EPMC3766054 | biostudies-literature
| S-EPMC9413435 | biostudies-literature
| S-EPMC6478898 | biostudies-literature
| S-EPMC5338314 | biostudies-literature
| S-EPMC5056431 | biostudies-literature
| S-EPMC9057963 | biostudies-literature
| S-EPMC10762245 | biostudies-literature
| S-EPMC5355792 | biostudies-literature
2025-04-10 | PXD062804 |
| S-EPMC5665909 | biostudies-literature