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Molecular mechanisms of the formation of DNA double-strand breaks and induction of genomic rearrangements
- Source :
- Mutation Research/Fundamental and Molecular Mechanisms of Mutagenesis. 266:163-170
- Publication Year :
- 1992
- Publisher :
- Elsevier BV, 1992.
-
Abstract
- The probability that damage occurs in closely opposed sites on complementary DNA strands increases when DNA is heavily modified with mutagenic agents. Enzymatic excision of the opposite lesions produces DNA double-strand breaks which give rise to genomic rearrangements (deletions, insertions, etc.). Plasmid systems were developed for studying chemical lesions leading to double-strand breaks and the fate of broken plasmid molecules within bacterial cells. Deletions result from the base-pairing of fortuitously located direct repeats flanking the DNA broken ends; as a consequence, the latter are joined, while the DNA fragment between the direct repeats is deleted. Genomic rearrangements arise during the repair of the DNA double-strand breaks, and both events are due to similar repair enzymes which maintain the integrity of the DNA primary structure when conditions are not stressful. A number of genomic rearrangements and point mutations seem to be predetermined by the DNA primary structure.
- Subjects :
- Gene Rearrangement
chemistry.chemical_classification
Genetics
DNA ligase
Base Sequence
Base pair
DNA repair
Health, Toxicology and Mutagenesis
Circular bacterial chromosome
Point mutation
Molecular Sequence Data
Gene rearrangement
Biology
chemistry.chemical_compound
Plasmid
chemistry
Molecular Biology
DNA
DNA Damage
Subjects
Details
- ISSN :
- 00275107
- Volume :
- 266
- Database :
- OpenAIRE
- Journal :
- Mutation Research/Fundamental and Molecular Mechanisms of Mutagenesis
- Accession number :
- edsair.doi.dedup.....379f489e66c5505aa0dfe8fa98fb52ff
- Full Text :
- https://doi.org/10.1016/0027-5107(92)90183-3