Regulation of two phosphatases and a cyclic phosphodiesterase of Salmonella typhimurium
- 1 April 1977
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 130 (1) , 420-428
- https://doi.org/10.1128/jb.130.1.420-428.1977
Abstract
The regulation of three Salmonella typhimurium phosphatases in reponse to different nutritional limitations has been studied. Two enzymes, an acid hexose phosphatase (EC 3.1.3.2) and a cyclic phosphodiesterase (EC 3.1.4.d), appear to be regulated by the cyclic adenosine 3' ,5'-monophosphate (AMP) catabolite repression system. Levels of these enzymes increased in cells grown on poor carbon sources but not in cells grown on poor nitrogen or phosphorus sources. Mutants lacking adenyl cyclase did not produce elevated levels of these enzymes in response to carbon limitation unless cyclic AMP was supplied. Mutants lacking the cyclic AMP receptor protein did not produce elevated levels of these enzymes in response to carbon limitation regardless of the presence of cyclic AMP. Since no specific induction of either enzyme could be demonstrated, these enzymes appear to be controlled solely by the cyclic AMP system. Nonspecific acid phsphatase activity (EC 3.1.3.2) increased in response to carbon, nitrogen, phosphorus, or sulfur limitation. The extent of the increase depended on growth rate, with slower growth rates favoring greater increases, and on the type of limitation. Limitation for either carbon or phosphorus resulted in maximum increases, whereas severe limitation of Mg2+ caused only a slight increase. The increase in nonspecific acid phosphatase during carbon limitation was apparently not mediated by the catabolite repression system since mutants lacking adenyl cyclase or the cyclic AMP receptor protein still produced elevated levels of this enzyme during carbon starvation. Nor did the increase during phosphorus limitation appear to be mediated by the alkaline phosphatase regulatory system. A strain of Salmonella bearing a chromosomal mutation, which caused constitutive production of alkaline phosphatase (introduced by an episome from Escherichia coli), did not have constitutive levels of nonspecific acid phosphatase.This publication has 27 references indexed in Scilit:
- Control of the synthesis of a single enzyme by multiple regulatory circuits in Neurospora crassa.Proceedings of the National Academy of Sciences, 1975
- The relationship between the phosphate-binding protein and a regulator gene product from Escherichia coliBiochimica et Biophysica Acta (BBA) - Protein Structure, 1974
- Influence of protease inhibitors and energy metabolism on intracellular protein breakdown in starving Escherichia coliBiochemical and Biophysical Research Communications, 1973
- Stimulation by Cyclic AMP and ppGpp of Chloramphenicol Acetyl Transferase SynthesisNature New Biology, 1973
- Adenosine 3′:5′-Cyclic Monophosphate Concentration in the Bacterial Host Regulates the Viral Decision between Lysogeny and LysisProceedings of the National Academy of Sciences, 1971
- Effect of inorganic phosphate upon Salmonella typhimurium phosphatase activities: non-repressible alkaline phosphatase and non-inhibited acid phosphataseBiochimica et Biophysica Acta (BBA) - Enzymology, 1967
- Purification and Properties of Two Acid Phosphatase Fractions Isolated from Osmotic Shock Fluid of Escherichia coli*Biochemistry, 1967
- Isolation of a protein specified by a regulator geneJournal of Molecular Biology, 1964
- A new device for controlling the growth rate of microorganisms: The exponential gradient generatorAnalytical Biochemistry, 1964
- Acid phosphatase and the growth of Escherichia coliBiochimica et Biophysica Acta, 1961