Abstract
Histidyl-transfer ribonucleic acid (tRNA) synthetase (HRS), coded by the hisS gene, appears to play two roles in regulation of the histidine operon of Salmonella typhimurium: (i) in synthesis of a critical effector molecule, histidyl-tRNA, and (ii) a more direct effect elicited by the presence of the enzyme protein itself. The specific activity of HRS was elevated either by mutations in the strB locus or in hisS(+) merodiploids of Escherichia coli/S. typhimurium and S. abony/S. typhimurium. In each case, an increase in HRS was accompanied by an increase in histidine operon expression, indicating that HRS may be involved in positive control of the histidine operon. It is unlikely that HRS leads to increased histidine operon expression merely by acting as a "sponge" for charged tRNA. Rather, HRS appears to influence operon expression by interaction with some effector molecule other than charged tRNA or by a direct interaction with the histidine operator-promoter region. The functional level of histidine operon expression has no effect on HRS specific activity.
MeSH Terms
Alcohol Oxidoreductases/metabolism
Amino Acyl-tRNA Synthetases/metabolism
Amino Alcohols
Cell-Free System
Chromosome Mapping
Drug Resistance, Microbial
Escherichia coli
Genes, Dominant
Histidine/biosynthesis
Mutation
Nicotinic Acids/metabolism
Operon
Phosphoric Monoester Hydrolases/metabolism
Recombination, Genetic
Salmonella
Salmonella typhimurium/drug effects,enzymology,growth & development,metabolism
Streptomycin/pharmacology
Thiamine/metabolism
Transduction, Genetic
Chemicals
Amino Alcohols
Nicotinic Acids
Histidine
Alcohol Oxidoreductases
Phosphoric Monoester Hydrolases
Amino Acyl-tRNA Synthetases
Thiamine
Streptomycin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Wyche J H
Ely B
Cebula T A
Snead M C
Hartman P E
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