Affiliation:
1. Department of Microbiology, University of Massachusetts, Amherst, Massachusetts 01003
Abstract
ABSTRACT
The hyperthermophilic archaeon
Pyrobaculum islandicum
uses the citric acid cycle in the oxidative and reductive directions for heterotrophic and autotrophic growth, respectively, but the control of carbon flow is poorly understood.
P. islandicum
was grown at 95°C autotrophically, heterotrophically, and mixotrophically with acetate, H
2
, and small amounts of yeast extract and with thiosulfate as the terminal electron acceptor. The autotrophic growth rates and maximum concentrations of cells were significantly lower than those in other media. The growth rates on H
2
and 0.001% yeast extract with and without 0.05% acetate were the same, but the maximum concentration of cells was fourfold higher with acetate. There was no growth with acetate if 0.001% yeast extract was not present, and addition of H
2
to acetate-containing medium greatly increased the growth rates and maximum concentrations of cells.
P. islandicum
cultures assimilated
14
C-labeled acetate in the presence of H
2
and yeast extract with an efficiency of 55%. The activities of 11 of 19 enzymes involved in the central metabolism of
P. islandicum
were regulated under the three different growth conditions. Pyruvate synthase and acetate:coenzyme A (CoA) ligase (ADP-forming) activities were detected only in heterotrophically grown cultures. Citrate synthase activity decreased in autotrophic and acetate-containing cultures compared to the activity in heterotrophic cultures. Acetylated citrate lyase, acetate:CoA ligase (AMP forming), and phosphoenolpyruvate carboxylase activities increased in autotrophic and acetate-containing cultures. Citrate lyase activity was higher than ATP citrate synthase activity in autotrophic cultures. These data suggest that citrate lyase and AMP-forming acetate:CoA ligase, but not ATP citrate synthase, work opposite citrate synthase to control the direction of carbon flow in the citric acid cycle.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
36 articles.
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