An analysis of the repair processes in ultraviolet-irradiated Micrococcus luteus using purified ultraviolet-endonuclease |
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Authors: | N.V. Tomilin S.V. Zherebtsov |
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Affiliation: | Institute of Cytology, Academy of Sciences of the U.S.S.R., MacLean Avenue, 32, Leningrad 190121 U.S.S.R. |
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Abstract: | The measurement of the frequency of endonucleolytic incisions in ultraviolet-irradiated DNA serves as the test for the presence of pyrimidine dimers. In accordance with this approach, the lysates of three Micrococcus luteus strains containing radioactively labeled chromosomes were treated with purified M. luteus ultraviolet-endonuclease to trace segregation of dimers amongst parental and newly synthesized DNA and their removal during postreplication and excision DNA repair. A considerable proportion of the dimers in all strains tested proved to be insensitive to the action of exogenous incising enzyme. The use of chloramphenicol as an inhibitor of postirradiation protein synthesis in combination with ultraviolet-endonuclease treatment of DNA allowed to reveal at least two alternative pathways of postreplication repair: constitutively active recombinational pathway and inducible nonrecombinational one. |
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Keywords: | DNA repair Endonuclease Ultraviolet irradiation Pyrimidine dimer (M. luteus) |
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