Affiliation:
1. Department of Experimental Chemistry, Division of Research and Laboratories, National Jewish Hospital, Denver, Colorado
Abstract
Harold
, F. M. (National Jewish Hospital, Denver, Colo.). Accumulation of inorganic polyphosphate in
Aerobacter aerogenes
. I. Relationship to growth and nucleic acid synthesis. J. Bacteriol.
86:
216–221. 1963.—Growing cells of
Aerobacter aerogenes
contain traces of inorganic polyphosphate, but large amounts often accumulate when growth ceases as the result of a nutritional deficiency. The reciprocal relationship between growth and polyphosphate accumulation was traced to competition between nucleic acid synthesis and polyphosphate for intracellular phosphorus. Polyphosphate accumulated only after nucleic acid synthesis had ceased. Resumption of nucleic acid synthesis (with or without concurrent cell growth) induced rapid degradation of the polyphosphate with transfer of the phosphorus to ribonucleic acid (RNA). At the same time, incorporation of P
32
into polyphosphate was reduced, though not abolished. Competition for adenosine triphosphate may be part of the explanation. In addition, it appears that polyphosphate degradation is accelerated under conditions which permit rapid nucleic acid synthesis, the phosphorus released being trapped in RNA.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Reference6 articles.
1. Role des acides amines dans la synthese des acides nucleiques chez Escherichia coli;GROS F.;Exptl. Cell Res.,1958
2. Accumulation of inorganic polyphosphate in mutants of Neurospora crassa;HAROLD F. M.;Biochim. Biophys. Acta,1960
3. Depletion and replenishment of the inorganic polyphosphate pool in Neurospora crassa;HAROLD F. M.;J. Bacteriol.,1962
4. HAROLD F. M. AND S. SYLVAN. 1962. Accumulation of inorganic polyphosphate in Aerobacter aerogenes during sulfur starvation. Abstr. Intern. Congr. Microbiol. 8th p. 36.
5. Transferring enzymes in the metabolism of inorganic polyphosphates and pyrophosphate;HOFFMANN-OSTENHOF O.;Proc. Intern. Symp. Enzyme Chem. Tokyo. Kyoto,1958
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