Control of protein synthesis in Escherichia coli: strain differences in control of translational initiation after energy source shift-down

Author:

Jacobson L A,Jen-Jacobson L

Abstract

We have studied the parameters of protein synthesis in a number of Escherichia coli strains after a shift-down from glucose-minimal to succinate-minimal medium. One group of strains, including K-12(lambda) (ATCC 10798) and NF162, showed a postshift translational yield of 50 to 65% and a 2- to 2.5-fold increase in the functional lifetime of general messenger ribonucleic acid. There was no change in the lag time for beta-galactosidase induction in these strains after the shift-down. A second group, including W1 and W2, showed no reduction in translational yield, no change in the functional lifetime of messenger ribonucleic acid, and a 50% increase in the lag time for beta-galactosidase induction. Evidence is presented which indicates that this increased lag time is not the result of a decreased rate of polypeptide chain propagation. A third group of strains, including NF161, CP78, and NF859, showed an intermediate pattern: translational yield was reduced to about 75% of normal, and the messenger ribonucleic acid functional lifetime was increased by about 50%. Calculation of the relative postshift rates of translational initiation gave about 0.2, 1.0, and 0.5, respectively, for the three groups. There was no apparent correlation between the ability to control translation and the genotypes of these strains at the relA, relX, or spoT loci. Measurements of the induction lag for beta-galactosidase during short-term glucose starvation or after a down-shift induced by alpha-methylglucoside indicated that these regimens elicit responses that are physiologically distinct from those elicited by a glucose-to-succinate shift-down.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference22 articles.

1. False feedback inhibition of aromatic amino acid biosynthesis by ,8-2-thienylalanine;Ezekiel D. H.;Biochim. Biophys. Acta,1965

2. The amino acid sequence of ,8-galactosidase of E. coli;Fowler A. V.;Proc. Natl. Acad. Sci. U.S.A.,1977

3. Control of messenger RNA synthesis and decay in E. coli;Friesen J. D.;J. Mol. Biol.,1966

4. Gallant J. and R. A. Lazzarini. 1975. The regulation of ribosomal RNA synthesis and degradation in bacteria p. 309-359. In E. H. McConkey (ed.) Protein synthesis: a series of advances. Marcel Dekker New York.

5. A novel nucleotide implicated in the response of E. coli to energy source downshift;Gallant J.;Cell,1976

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