Home LiteratureArticle Details
PMID: 11175725 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

In silico predictions of Escherichia coli metabolic capabilities are consistent with experimental data.

Nature biotechnology ·Vol. 19 ·No. 2 ·2001-02-00 ·Pages 125-30

Edwards JS, Ibarra RU, Palsson BO

Abstract

A significant goal in the post-genome era is to relate the annotated genome sequence to the physiological functions of a cell. Working from the annotated genome sequence, as well as biochemical and physiological information, it is possible to reconstruct complete metabolic networks. Furthermore, computational methods have been developed to interpret and predict the optimal performance of a metabolic network under a range of growth conditions. We have tested the hypothesis that Escherichia coli uses its metabolism to grow at a maximal rate using the E. coli MG1655 metabolic reconstruction. Based on this hypothesis, we formulated experiments that describe the quantitative relationship between a primary carbon source (acetate or succinate) uptake rate, oxygen uptake rate, and maximal cellular growth rate. We found that the experimental data were consistent with the stated hypothesis, namely that the E. coli metabolic network is optimized to maximize growth under the experimental conditions considered. This study thus demonstrates how the combination of in silico and experimental biology can be used to obtain a quantitative genotype-phenotype relationship for metabolism in bacterial cells.

MeSH Terms
Acetates/metabolism Biological Transport Computer Simulation Escherichia coli/genetics,growth & development,metabolism Genome, Bacterial Kinetics Models, Biological Oxygen Consumption Succinates/metabolism
Chemicals
Acetates Succinates
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Edwards J S
Department of Bioengineering, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0412, USA.
Ibarra R U
Palsson B O
Article Info
Journal
Nature biotechnology
Abbr.
Nat Biotechnol
ISSN
1087-0156
Published
2001-02-00
Pages
125-30
Language
English
Region
United States
NLM ID
9604648
Subset
IM
Grants
NIGMS NIH HHS · GM57089 · United States
Corrections
CommentIn
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