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PMID: 4867744 Published · ppublish English Journal Article

Effect of nalidixic acid and hydroxyurea on division ability of Escherichia coli fil+ and lon- strains.

Journal of bacteriology ·Vol. 95 ·No. 2 ·1968-02-00 ·Pages 520-30

Kantor GJ, Deering RA

Abstract

Short periods of incubation in medium containing nalidixic acid or hydroxyurea, followed by a return to normal growth conditions, induced filament formation in Escherichia coli B (fil(+)) and AB1899NM (lon(-)) but not in B/r (fil(-)) and AB1157 (lon(+)). These drugs reversibly stopped deoxyribonucleic acid (DNA) synthesis with little or no effect on ribonucleic acid (RNA) synthesis or mass increase. The initial imbalance caused by incubation in these drugs was the same for B and B/r as was macromolecular synthesis following a return to normal growth conditions. DNA degradation caused by nalidixic acid was measured and found to be the same for B and B/r. Hydroxyurea caused no DNA degradation in these two strains. Survival curves as determined under various conditions by colony formation suggested that the property of filament formation was responsible for the extrasensitivity of fil(+) and lon(-) strains to either nalidixic acid or hydroxyurea. E. coli B was more sensitive to either drug than was B/r or B(s-1). Pantoyl lactone or liquid holding treatment aided division and colony formation of nalidixic acid-treated B but had no effect on B/r. Likewise, the filament-former AB1899NM was more sensitive to nalidixic acid than was the non-filament-former AB1157. The sensitivity of B/r and B(s-1) to nalidixic acid was nearly the same except at longer times in nalidixic acid, when B(s-1) appeared more resistant. Even though nalidixic acid, hydroxyurea, and ultraviolet light may produce quite different molecular alterations in E. coli, they all cause a metabolic imbalance resulting in a lowered ratio of DNA to RNA and protein. We propose that it is this imbalance per se rather than any specific primary chemical or photochemical alterations which leads to filament formation by some genetically susceptible bacterial strains such as lon(-) and fil(+).

MeSH Terms
Bacterial Proteins/biosynthesis Carbon Isotopes Cell Division/drug effects DNA Replication/drug effects DNA, Bacterial/metabolism Escherichia coli/cytology,drug effects Hydroxyurea/pharmacology Lactones/pharmacology Nalidixic Acid/pharmacology RNA, Bacterial/biosynthesis Thymidine/metabolism Tritium Uracil/metabolism
Chemicals
Bacterial Proteins Carbon Isotopes DNA, Bacterial Lactones RNA, Bacterial Tritium Nalidixic Acid Uracil Thymidine Hydroxyurea
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Kantor G J
Deering R A
References (18)
18 references, click to expand
  1. Ultraviolet radiation studies of filamentous Escherichia coli B.
    J Bacteriol. 1966 Oct;92(4):1062-9 PMID: 5332863
  2. THE RELATIONSHIP BETWEEN GENE-CONTROLLED RADIATION RESISTANCE AND FILAMENT FORMATION IN ESCHERICHIA COLI.
    Biochim Biophys Acta. 1963 Oct 15;76:247-56 PMID: 14097380
  3. Cell division in a species of Erwinia III. Reversal of inhibition of cell division caused by D-amino acids, penicillin, and ultraviolet light.
    J Bacteriol. 1962 May;83:981-8 PMID: 13902419
  4. Effects of ultraviolet radiation on macromolecular synthesis in Escherichia coli.
    J Mol Biol. 1966 Jan;15(1):201-19 PMID: 5330217
  5. Thymineless death in Escherichia coli: strain specificity.
    J Bacteriol. 1967 Jun;93(6):1917-24 PMID: 5337772
  6. The role of host-cell repair in liquid-holding recovery of u.v.-irradiated Escherichia coli.
    Photochem Photobiol. 1966 Sep;5(9):747-60 PMID: 5333397
  7. Recovery of division ability in ultraviolet-irradiated Escherichia coli induced by photoreactivation, photoprotection, and liquid holding treatment.
    J Bacteriol. 1967 Dec;94(6):1946-50 PMID: 4864408
  8. Mechanism of action of nalidixic acid on Escherichia coli. IV. Effects on the stability of cellular constituents.
    J Bacteriol. 1966 Feb;91(2):774-9 PMID: 5327370
  9. MECHANISM OF ACTION OF NALIDIXIC ACID ON ESCHERICHIA COLI.II. INHIBITION OF DEOXYRIBONUCLEIC ACID SYNTHESIS.
    J Bacteriol. 1965 Apr;89:1068-74 PMID: 14276097
  10. THYMINE DIMERS AND INHIBITION OF DNA SYNTHESIS BY ULTRAVIOLET IRRADIATION OF CELLS.
    Science. 1963 Dec 13;142(3598):1464-6 PMID: 14077026
  11. Genetics of Resistance to Radiation in ESCHERICHIA COLI.
    Genetics. 1947 May;32(3):221-48 PMID: 17247241
  12. A LOCUS THAT CONTROLS FILAMENT FORMATION AND SENSITIVITY TO RADIATION IN ESCHERICHIA COLI K-12.
    Genetics. 1964 Feb;49:237-46 PMID: 14124942
  13. Induction of filamentous forms in ultraviolet-irradiated E. coli B.
    Br J Radiol. 1954 Jan;27(313):76-80 PMID: 13115659
  14. Studies with hydroxyurea. I. The reversible inhibition of bacterial DNA synthesis and the effect of hydroxyurea on the bactericidal action of streptomycin.
    Biochim Biophys Acta. 1966 Mar 21;114(3):501-15 PMID: 5330658
  15. Mechanism of action of nalidixic acid on Escherichia coli. 3. Conditions required for lethality.
    J Bacteriol. 1966 Feb;91(2):768-73 PMID: 5327367
  16. RECOVERY FROM ULTRAVIOLET IRRADIATION IN ESCHERICHIA COLI.
    J Bacteriol. 1949 Mar;57(3):363-75 PMID: 16561686
  17. Studies on division inhibition and filament formation of Escherichia coli by ultraviolet light.
    J Bacteriol. 1958 Aug;76(2):123-30 PMID: 13563405
  18. ANALYSIS OF A GENE CONTROLLING CELL DIVISION AND SENSITIVITY TO RADIATION IN ESCHERICHIA COLI.
    J Bacteriol. 1964 Mar;87:720-6 PMID: 14127589
Article Info
Journal
Journal of bacteriology
Abbr.
J Bacteriol
ISSN
0021-9193
Published
1968-02-00
Pages
520-30
Language
English
Region
United States
NLM ID
2985120R
PMCID
PMC252048
Subset
IM
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