Abstract
Continuously growing cultures of E. coli B/r were irradiated with a fluence of broad-band near-ultraviolet radiation (315-405 nm) sufficient to cause extensive growth delay and complete cessation of net RNA synthesis. Chloramphenicol treatment was found to stimulate resumption of RNA synthesis, similar to that observed with chloramphenicol treatment after amino-acid starvation. E. coli strains in which amino-acid starvation does not result in cessation of RNA synthesis ("relaxed" or rel- strains) show no cessation of growth and only a slight effect on the rate of growth or of RNA synthesis. These findings show that such near-UV fluences do not inactivate the RNA synthetic machinery but affect the regulation of RNA synthesis, in a manner similat to that produced by amino-acid starvation. Such regulation is believed to be mediated through alterations in concentration of guanosine tetraphosphate (ppGpp), and our estimations of ppGpp after near-UV irradiation are consistent with such an interpretation. These data, combined with earlier published data, strongly suggest that the mechanism of near-UV-induced growth delay in E. coli involves partial inactivation of certain tRNA species, which is interpreted by the cell in a manner similar to that of amino-acid starvation, causing a rise in ppGpp levels, a shut-off of net RNA synthesis, and the induction of a growth delay.
MeSH Terms
Amino Acids/metabolism
Cell Division/radiation effects
Chloramphenicol/pharmacology
Escherichia coli
Guanine Nucleotides/metabolism
Models, Biological
Mutation
RNA, Bacterial/biosynthesis
RNA, Transfer/radiation effects
Radiation Effects
Thiouracil/radiation effects
Ultraviolet Rays
Chemicals
Amino Acids
Guanine Nucleotides
RNA, Bacterial
Thiouracil
Chloramphenicol
RNA, Transfer
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Ramabhadran T V
Jagger J
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20 references, click to expand
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