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February 28, 2026Microbiology Research0 citationsOpen Access

Phenotypic Characterization of Phosphofructokinase Variants in Escherichia coli

HRHemshikha RajpurohitMEMark A. Eiteman

Key Points

  • The study aims to characterize the effects of PfkA variants on growth and enzyme function in E. coli.
  • Constructed 22 PfkA variants in E. coli C for comparison.
  • Measured growth rates using glucose as the sole carbon source.
  • Analyzed key intracellular metabolites and gene expression under nitrogen-limited conditions.
  • 14 out of 22 variants showed growth rates below 20% of the wild-type strain.
  • Strains with higher growth rates formed acetate and had greater glucose consumption.
  • Increased mutation severity led to decreased concentrations of acetyl-CoA and fructose-1,6-bisphosphate.

Abstract

Phosphofructokinase 1 (PfkA) mediates the ATP-dependent phosphorylation of fructose-6-phosphate and is a key, controlling enzyme in glycolysis for Escherichia coli and other organisms. In this study, 22 chromosomally expressed PfkA variants were constructed in E. coli C. These variants, the wild-type strain, and the ∆pfkA strain were compared for growth rates using glucose as the sole carbon source. The majority of variants (14 of 22) attained a growth rate less than 20% of the growth rate of the wild-type strain (0.94 h−1) and thus similar to the knockout strain (0.12 h−1). Three variants (R171S, F76Y, and R77A), representing a range of growth phenotypes, and strains expressing the wild-type PfkA and the ∆pfkA deletion strain were additionally examined for key intracellular metabolites and gene expression under nitrogen-limited steady-state conditions. These five strains could be distinguished by two groupings: strains with relatively high growth rates under batch conditions (wild-type and R77A variant) showed the greatest glucose consumption rate and formed acetate, whereas strains with low growth rates (F76Y, R77A, and ∆pfkA) exhibited low glucose consumption and did not accumulate acetate. As the PfkA mutation severity increased, the intracellular concentrations of acetyl-CoA and fructose-1,6-bisphosphate and the sum of dihydroxyacetone and glyceraldehyde-3-phosphate greatly decreased. Although the mutation severity had a limited effect on the expression of maeB and icd genes expressing malic enzyme and isocitrate dehydrogenase, it correlated with reduced expression of zwf and pta genes expressing glucose-6P-dehydrogenase and phosphotransacetylase, respectively. The results highlight the great sensitivity of the enzyme to substitutions and the key role it plays in controlling glycolytic flux.

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Cite This Study

Rajpurohit et al. (2026) studied this question.

synapsesocial.com/papers/69a287e20a974eb0d3c03b26https://doi.org/10.3390/microbiolres17030049
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