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Engineering membrane asymmetry to increase medium-chain fatty acid tolerance in Saccharomyces cerevisiae

Authors :
Liang Guo
Pei Zhou
Guangjie Liang
Cong Gao
Guipeng Hu
Jing Wu
Xiulai Chen
Liming Liu
Wei Song
Weijia Yuan
Hui Liu
Source :
Biotechnology and bioengineeringREFERENCES. 119(1)
Publication Year :
2021

Abstract

Saccharomyces cerevisiae is an attractive chassis for the production of medium-chain fatty acids, but the toxic effect of these compounds often prevents further improvements in titer, yield, and productivity. To address this issue, Lem3 and Sfk1 were identified from adaptive laboratory evolution mutant strains as membrane asymmetry regulators. Co-overexpression of Lem3 and Sfk1 [Lem3(M)-Sfk1(H) strain] through promoter engineering remodeled the membrane phospholipid distribution, leading to an increased accumulation of phosphatidylethanolamine in the inner leaflet of the plasma membrane. As a result, membrane potential and integrity were increased by 131.5% and 29.2%, respectively; meanwhile, the final OD600 in the presence of hexanoic acid, octanoic acid, and decanoic acid was improved by 79.6%, 73.4%, and 57.7%, respectively. In summary, this study shows that membrane asymmetry engineering offers an efficient strategy to enhance medium-chain fatty acids tolerance in S. cerevisiae, thus generating a robust industrial strain for producing high-value biofuels.

Details

ISSN :
10970290
Volume :
119
Issue :
1
Database :
OpenAIRE
Journal :
Biotechnology and bioengineeringREFERENCES
Accession number :
edsair.doi.dedup.....ef278f417dc7432f14d0e5271ecfaa0f