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PMID: 1103833 Published · ppublish English Journal Article Review

Repair by genetic recombination in bacteria: overview.

Basic life sciences ·Vol. 5A ·1975-00-00 ·Pages 265-74

Howard-Flanders P

Abstract

DNA molecules that have been damaged in both strands at the same level are not subject to repair by excision but instead can be repaired through recombination with homologous molecules. Examples of two-strand damage include postreplication gaps opposite pyrimidine dimers, two-strand breaks produced by X-rays, and chemically induced interstrand cross-links. In ultraviolet-irradiated bacteria, the newly synthesized DNA is of length equal to the interdimer spacing. With continued incubation, this low-molecular-weight DNA is joined into high-molecular-weight chains (postreplication repair), a process associated with sister exchanges in bacteria. Recombination is initiated by pyrimidine dimers opposite postreplication gaps and by interstrand cross-links that have been cut by excision enzymes. The free ends at the resulting gaps presumably initiate the exchanges. Postreplication repair in Escherichia coli occurs in recB- AND RECC but is greatly slowed in recF- mutants. RecB and recC are the structural genes for exonuclease V, which digests two-stranded DNA by releasing oligonucleotides first from one strand and then from the other. The postreplication sister exchanges in ultra-violet-irradiated bacteria result in the distribution of pyrimidine dimers between parental and daughter strands, indicating that long exchanges involving both strands of each duplex occur. The R1 restriction endonuclease from E. COli has been used to cut the DNA of a bacterial drug-resistance transfer factor with one nuclease-sensitive site, and also DNA from the frog Xenopus enriched for ribosomal 18S and 28S genes. The fragments were annealed with the cut plasmid DNA and ligated, producing a new larger plasmid carrying the eukaryotic rDNA and able to infect and replicate in E. coli.

MeSH Terms
DNA Repair DNA Replication/radiation effects DNA Restriction Enzymes/metabolism DNA, Bacterial/metabolism Escherichia coli/metabolism,radiation effects Haemophilus influenzae/metabolism,radiation effects Molecular Weight Plasmids Radiation Effects Recombination, Genetic Species Specificity Ultraviolet Rays X-Rays
Chemicals
DNA, Bacterial DNA Restriction Enzymes
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Howard-Flanders P
Article Info
Journal
Basic life sciences
Abbr.
Basic Life Sci
ISSN
0090-5542
Published
1975-00-00
Pages
265-74
Language
English
Region
United States
NLM ID
0360077
Subset
IM
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