Enhancement of lysyl-tRNA synthetase activity in the Enterobacteriaceae
Conference
·
· Fed. Proc., Fed. Am. Soc. Exp. Biol.; (United States)
OSTI ID:6074752
Lysyl-tRNA synthetase (LRS) in E. coli is coded by two genes, one constitutive, and the other inducible; the latter is a cell stress protein. To determine if this system is wide spread in prokaryotes, the inducibility of LRS was first tested in eight members of the Enterobacteriaceae using cultural conditions known to induce the enzyme in E. coli K-12. Uninduced control cultures were grown to an O.D. of 0.2 at 580 nm in a supplemented minimal medium (SMM), pH 7.0 at 37/sup 0/C. Induction stimuli include: growth in SMM with 3mM Gly-L-Leu; growth in SMM as above, but with the initial pH adjusted to 5.0; or growth in Difco AC Broth to early stationary phase with a concomitant drop in the pH of the medium below 5.5. LRS activity was assayed in whole-cell sonic extracts by the aminoacylation of crude E. coli tRNA by /sup 14/C-lysine at pH 7.8 for three minutes. When E. aerogenes, K. pneumoniae, C. freundii, and S. typhimurium were grown in AC Broth, LRS activity was enhanced 2 to 4 fold. The enzyme is induced 2 to 4 fold in C. freundii and S. typhimurium upon growth at pH 5.0, whereas E. coli, K.; pneumoniae, and E. aerogenes show only a 1.5 fold induction. The peptide Gly-L-Leu enhanced LRS activity only in E. coli. LRS was not found to be inducible in S. marcescens, M. morganii, P. mirabilis, or P. vulgaris by any of the stimuli.
- Research Organization:
- St. John's Univ., Jamaica, NY
- OSTI ID:
- 6074752
- Report Number(s):
- CONF-870644-
- Conference Information:
- Journal Name: Fed. Proc., Fed. Am. Soc. Exp. Biol.; (United States) Journal Volume: 46:6
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
550201* -- Biochemistry-- Tracer Techniques
59 BASIC BIOLOGICAL SCIENCES
AMINO ACIDS
BACTERIA
BIOLOGICAL VARIABILITY
CARBON 14 COMPOUNDS
CARBOXYLIC ACIDS
ENZYME ACTIVITY
ENZYMES
ESCHERICHIA COLI
GENES
GROWTH
ISOTOPE APPLICATIONS
LABELLED COMPOUNDS
LIGASES
LYSINE
MICROORGANISMS
NUCLEIC ACIDS
ORGANIC ACIDS
ORGANIC COMPOUNDS
RNA
TRACER TECHNIQUES
TRANSFER RNA
59 BASIC BIOLOGICAL SCIENCES
AMINO ACIDS
BACTERIA
BIOLOGICAL VARIABILITY
CARBON 14 COMPOUNDS
CARBOXYLIC ACIDS
ENZYME ACTIVITY
ENZYMES
ESCHERICHIA COLI
GENES
GROWTH
ISOTOPE APPLICATIONS
LABELLED COMPOUNDS
LIGASES
LYSINE
MICROORGANISMS
NUCLEIC ACIDS
ORGANIC ACIDS
ORGANIC COMPOUNDS
RNA
TRACER TECHNIQUES
TRANSFER RNA