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Systems-level understanding of ethanol-induced stresses and adaptation in E. coli

Publication ,  Journal Article
Cao, H; Wei, D; Yang, Y; Shang, Y; Li, G; Zhou, Y; Ma, Q; Xu, Y
Published in: Scientific Reports
March 16, 2017

Understanding ethanol-induced stresses and responses in biofuel-producing bacteria at systems level has significant implications in engineering more efficient biofuel producers. We present a computational study of transcriptomic and genomic data of both ethanol-stressed and ethanol-adapted cells with computationally predicated ethanol-binding proteins and experimentally identified ethanol tolerance genes. Our analysis suggests: (1) ethanol damages cell wall and membrane integrity, causing increased stresses, particularly reactive oxygen species, which damages DNA and reduces the O level; (2) decreased cross-membrane proton gradient from membrane damage, coupled with hypoxia, leads to reduced ATP production by aerobic respiration, driving cells to rely more on fatty acid oxidation, anaerobic respiration and fermentation for ATP production; (3) the reduced ATP generation results in substantially decreased synthesis of macromolecules; (4) ethanol can directly bind 213 proteins including transcription factors, altering their functions; (5) all these changes together induce multiple stress responses, reduced biosynthesis, cell viability and growth; and (6) ethanol-adapted cells restore the majority of these reduced activities through selection of specific genomic mutations and alteration of stress responses, ultimately restoring normal ATP production, macromolecule biosynthesis, and growth. These new insights into the energy and mass balance will inform design of more ethanol-tolerant strains.

Duke Scholars

Published In

Scientific Reports

DOI

EISSN

2045-2322

Publication Date

March 16, 2017

Volume

7

Issue

1

Publisher

Springer Science and Business Media LLC
 

Citation

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Cao, H., Wei, D., Yang, Y., Shang, Y., Li, G., Zhou, Y., … Xu, Y. (2017). Systems-level understanding of ethanol-induced stresses and adaptation in E. coli. Scientific Reports, 7(1). https://doi.org/10.1038/srep44150
Cao, Huansheng, Du Wei, Yuedong Yang, Yu Shang, Gaoyang Li, Yaoqi Zhou, Qin Ma, and Ying Xu. “Systems-level understanding of ethanol-induced stresses and adaptation in E. coli.” Scientific Reports 7, no. 1 (March 16, 2017). https://doi.org/10.1038/srep44150.
Cao H, Wei D, Yang Y, Shang Y, Li G, Zhou Y, et al. Systems-level understanding of ethanol-induced stresses and adaptation in E. coli. Scientific Reports. 2017 Mar 16;7(1).
Cao, Huansheng, et al. “Systems-level understanding of ethanol-induced stresses and adaptation in E. coli.” Scientific Reports, vol. 7, no. 1, Springer Science and Business Media LLC, Mar. 2017. Crossref, doi:10.1038/srep44150.
Cao H, Wei D, Yang Y, Shang Y, Li G, Zhou Y, Ma Q, Xu Y. Systems-level understanding of ethanol-induced stresses and adaptation in E. coli. Scientific Reports. Springer Science and Business Media LLC; 2017 Mar 16;7(1).

Published In

Scientific Reports

DOI

EISSN

2045-2322

Publication Date

March 16, 2017

Volume

7

Issue

1

Publisher

Springer Science and Business Media LLC