Effects of aerobiosis and nitrogen source on the proton motive force in growing Escherichia coli and Klebsiella pneumoniae cells
- 1 April 1981
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 146 (1) , 377-384
- https://doi.org/10.1128/jb.146.1.377-384.1981
Abstract
The electrochemical gradient of hydrogen ions, or proton motive force (PMF), was measured in growing Escherichia coli and Klebsiella pneumoniae in batch culture. The electrical component of the PMF (delta psi) and the chemical component (delta pH) were calculated from the cellular accumulation of radiolabeled tetraphenylphosphonium, thiocyanate, and benzoate ions. In both species, the PMF was constant during exponential phase and decreased as the cells entered stationary phase. Altering the growth rate with different energy substrates had no effect on the PMF. The delta pH (alkaline inside) varied with the pH of the culture medium, resulting in a constant internal pH. During aerobic growth in media at pH 6 to 7, the delta psi was constant at 160 mV (negative inside). The PMF, therefore, was 255 mV in cells growing at pH 6.3, and decreased progressively to 210 mV in pH 7.1 cultures. K. pneumoniae cells and two E. coli strains (K-12 and ML), including a mutant deficient in the H+-translocating ATPase and a pleiotropically energy-uncoupled mutant with a normal ATPase, had the same PMF during aerobic exponential phase. During anaerobic growth, however, both species had delta psi values equal to 0. Therefore, the PMF in anaerobic cells consisted only of the delta pH component, which was 75 mV or less in cells growing at pH 6.2 or greater. These data thus met the expectation that cells deriving metabolic energy from respiration have a PMF above a threshold value of about 200 mV when the ATPase functions in the direction of H+ influx and ATP synthesis; in fermenting cells, a PMF below a threshold value was expected since the enzyme functions in the direction of H+ extrusion and ATP hydrolysis. K. pneumoniae cells growing anaerobically had no delta psi whether the N source added was N2, NH+4 or one of several amino acids; the delta pH was unaffected. Therefore, any energy cost incurred by the process of nitrogen fixation could not be detected as an alteration of the proton gradient.This publication has 38 references indexed in Scilit:
- Quantitative measurements of membrane potential in Escherichia coliBiochemistry, 1980
- The involvement of the membrane potential in nitrogen fixation by bacteroids of Rhizobium leguminosarumFEBS Letters, 1979
- Proton electrochemical gradient in Escherichia coli cells and its relation to active transport of lactoseBiochemistry, 1979
- Accumulation of thallous ions (Tl+) as a measure of the electrical potential difference across the cytoplasmic membrane of bacteriaBiochemistry, 1978
- The Apparent ATP Requirement for Nitrogen Fixation in Growing Klebsiella pneumoniaeJournal of General Microbiology, 1976
- Influence of Atmospheric Oxygen Concentration on Acetylene Reduction and Efficiency of Nitrogen Fixation in Intact Klebsiella pneumoniaeJournal of General Microbiology, 1976
- Nitrogen fixation by Klebsiella grown in the presence of oxygenCanadian Journal of Microbiology, 1972
- CHEMIOSMOTIC COUPLING IN OXIDATIVE AND PHOTOSYNTHETIC PHOSPHORYLATIONBiological Reviews, 1966
- Release of lipopolysaccharide by EDTA treatment of E., coliBiochemical and Biophysical Research Communications, 1965
- Actinomycin sensitivity in Escherichiacoli produced by EDTABiochemical and Biophysical Research Communications, 1965