Repair of deoxyribonucleic acid in Haemophilus influenzae. I. X-ray sensitivity of ultraviolet-sensitive mutants and their behavior as hosts to ultraviolet-irradiated bacteriophage and transforming deoxyribonucleic acid.

Journal of Bacteriology
J K SetlowM P Gordon

Abstract

Seven mutants of Haemophilus influenzae were isolated by the criterion of sensitivity to ultraviolet (UV) inactivation of colony formation. These mutants and the wild type were characterized with regard to X-ray inactivation of colony formation, UV induction of division inhibition, the ability of the eight strains to act as recipients to UV-irradiated H. influenzae phage and transforming deoxyribonucleic acid (DNA), and the influence of acriflavine on the survival of UV-irradiated transforming DNA with these strains as recipients. The photoreactivable sector of transforming DNA with yeast photoreactivating enzyme was measured for the most UV-sensitive mutant and was found to be greater than that of wild type. Judged by the above criteria, the order of the strains' sensitivities shows some, but by no means complete, correlation from one type of sensitivity characterization to another, indicating that a minimum of two variables is needed to explain the differences in the strains. Acriflavine increases the UV sensitivity of transforming DNA except in the most sensitive mutant. This effect is usually, but not always, more pronounced in the case of the more UV-resistant marker. The acriflavine effect is postulated to be the result o...Continue Reading

Citations

Jul 1, 1973·Photochemistry and Photobiology·F W Pons, H D Mennigmann
Jan 1, 1983·Molecular & General Genetics : MGG·J H Stuy, H Bagci
Feb 3, 1999·Proceedings of the National Academy of Sciences of the United States of America·S DawidJ W St Geme
Jan 17, 2004·The Journal of Biological Chemistry·Neeraj K SuranaJoseph W St Geme
Sep 1, 1992·Photochemistry and Photobiology·R W TuvesonR S Becker
Oct 15, 1998·Proceedings of the National Academy of Sciences of the United States of America·J QiuA G Plaut
Jan 1, 1969·Molecular & General Genetics : MGG·M R Chevallier, M L Greth
Apr 5, 2003·Journal of Medical Microbiology·Dayle A DainesArnold L Smith
Apr 1, 1991·Photochemistry and Photobiology·T P WangG R Wang
Dec 1, 1989·Photochemistry and Photobiology·R W TuvesonM R Berenbaum
May 1, 1986·Molecular & General Genetics : MGG·J H Stuy, R B Walter
Jun 9, 1971·Nature: New Biology·K L Beattie, J K Setlow
Mar 1, 1970·Photochemistry and Photobiology·D J Barnhart, S H Cox
Nov 1, 1990·Photochemistry and Photobiology·R W TuvesonJ Kagan
Apr 22, 2008·Journal of Bacteriology·Amanda J SheetsJoseph W St Geme
Jan 1, 1984·Molecular & General Genetics : MGG·H MooibroekG Venema
Jan 1, 1987·Environmental and Molecular Mutagenesis·R W TuvesonR Santus
Jan 1, 1972·Archiv für Mikrobiologie·V D Zhevner, S V Shestakov
Jun 19, 2001·Mutation Research·J K SetlowE Cabrera-Juárez
Oct 1, 1970·Journal of Bacteriology·K L Beattie, J K Setlow
Jul 1, 1980·Journal of Bacteriology·N K Notani, J K Setlow

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