Repair of Single-Strand Deoxyribonucleic Acid Breaks in Ultraviolet Light-Irradiated Haemophilus influenzae

Author:

Kantor George J.1,Barnhart B. J.2

Affiliation:

1. Department of Biological Sciences, Wright State University, Dayton, Ohio 45431

2. Biomedical Research Group, Los Alamos Scientific Laboratory, University of California, Los Alamos, New Mexico 87544

Abstract

The wild-type strain and mutants of Haemophilus influenzae , sensitive or resistant to ultraviolet light (UV) as defined by colony-forming ability, were examined for their ability to perform the incision and rejoining steps of the deoxyribonucleic acid (DNA) dark repair process. Although UV-induced pyrimidine dimers are excised by the wild-type Rd and a resistant mutant BC200, the expected single-strand DNA breaks could not be detected on alkaline sucrose gradients. Repair of the gap resulting from excision must be rapid when experimental conditions described by us are employed. Single-strand DNA breaks were not detected in a UV-irradiated sensitive mutant (BC100) incapable of excising pyrimidine dimers, indicating that this mutant may be defective in a dimer-recognizing endonuclease. No single-strand DNA breaks were detected in a lysogen BC100(HP1c1) irradiated with a UV dose large enough to induce phage development in 80% of the cells.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference18 articles.

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3. Recovery of Haemophilus influenzae from ultraviolet and X-ray damage;Barnhart B. J.;Photochem. Photobiol.,1970

4. Radiation sensitivity of Haemophilus influenzae: a composite response;Barnhart B. J.;J. Bacteriol.,1970

5. Molecular weights of coliphages and coliphages DNA. IV. Molecular weights of DNA from bacteriophages T4, T5 and T7 and the general problem of determining M;Freifelder D.;J. Mol. Biol.,1970

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