E. coli mutant NR71 grows on succinate in the absence of an F 1 ATPase

ABSTRACT Over 50 years ago, two E. coli ATPase mutants were isolated and characterized. The first, NR70, was later shown to contain a 21-base deletion in the gene for the gamma subunit of the F 1 F 0 ATPase, rendering it incapable of growth on the nonfermentable carbon source succinate. The second, NR71, was derived from NR70 by selection for growth on succinate. We show that NR71 contains a stop codon near the middle of the gene for the alpha subunit, making it unable to synthesize a full-length alpha subunit. We further show that we could not detect the alpha, beta, or gamma subunits in membranes isolated from this strain. Strain NR71 can grow on succinate despite the absence of an intact F 1 ATPase and therefore carry out succinate-dependent ATP synthesis by an unknown process. IMPORTANCE An E. coli strain lacking an ATPase can nonetheless grow on a non-fermentable carbon source, indicating that this mutant has an unknown mechanism for synthesizing ATP from the oxidation of succinate.

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Journal
Journal of Bacteriology
Published
2026-09-14
DOI
https://doi.org/10.1128/jb.00171-26
Primary Topic
ATP Synthase and ATPases Research
Type
article
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article

E. coli mutant NR71 grows on succinate in the absence of an F 1 ATPase

W S Brusilow
Journal of Bacteriology
ATP Synthase and ATPases Research
article

E. coli mutant NR71 grows on succinate in the absence of an F 1 ATPase

W S Brusilow
article en

Abstract

ABSTRACT Over 50 years ago, two E. coli ATPase mutants were isolated and characterized. The first, NR70, was later shown to contain a 21-base deletion in the gene for the gamma subunit of the F 1 F 0 ATPase, rendering it incapable of growth on the nonfermentable carbon source succinate. The second, NR71, was derived from NR70 by selection for growth on succinate. We show that NR71 contains a stop codon near the middle of the gene for the alpha subunit, making it unable to synthesize a full-length alpha subunit. We further show that we could not detect the alpha, beta, or gamma subunits in membranes isolated from this strain. Strain NR71 can grow on succinate despite the absence of an intact F 1 ATPase and therefore carry out succinate-dependent ATP synthesis by an unknown process. IMPORTANCE An E. coli strain lacking an ATPase can nonetheless grow on a non-fermentable carbon source, indicating that this mutant has an unknown mechanism for synthesizing ATP from the oxidation of succinate.

Journal of Bacteriology
Wayne State University (US)
Openalex Percentile: Top 18%
ATP Synthase and ATPases Research
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E. coli mutant NR71 grows on succinate in the absence of an F 1 ATPase — W S Brusilow · Journal of Bacteriology (2026) | TGRS Research Map | TGRS