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PMID: 3456159 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Capacity of RecA protein to bind preferentially to UV lesions and inhibit the editing subunit (epsilon) of DNA polymerase III: a possible mechanism for SOS-induced targeted mutagenesis.

Lu C, Scheuermann RH, Echols H

Abstract

The RecA protein of Escherichia coli is required for SOS-induced mutagenesis in addition to its recombinational and regulatory roles. Most SOS-induced mutations probably occur during replication across a DNA lesion (targeted mutagenesis). We have suggested previously that RecA might participate in targeted mutagenesis by binding preferentially to the site of the DNA damage (e.g., pyrimidine dimer) because of its partially unwound character; DNA polymerase III (polIII) will then encounter RecA-coated DNA at the lesion and might replicate across the damaged site with reduced fidelity. In this report, we analyze at a biochemical level two major predictions of this model. With respect to lesion recognition, we show that purified RecA protein binds more efficiently to UV-irradiated double-stranded DNA than to nonirradiated DNA, as judged by filter-binding and gel electrophoresis assays. With respect to replication fidelity, Fersht and Knill-Jones [Fersht, A. R. & Knill-Jones, J. W. (1983) J. Mol. Biol. 165, 669-682] have found that RecA inhibits the 3'----5' exonuclease (editing function) of polIII holoenzyme. We extend this observation by demonstrating that RecA inhibits the exonuclease of the purified editing subunit of polIII, epsilon protein. Thus, we suggest that the activities of RecA required for targeted mutagenesis are lesion-recognition, followed by localized inhibition of the editing capacity of the epsilon subunit of polIII holoenzme. In this proposed mechanism, one activation signal for RecA for mutagenesis is the lesion itself. Because UV-irradiated, double-stranded DNA efficiently activates RecA for cleavage of the LexA repressor, the lesion itself may also often serve as an activation signal for induction of SOS-controlled genes.

MeSH Terms
Antibody Diversity DNA Polymerase III/antagonists & inhibitors,metabolism DNA Replication DNA, Bacterial/metabolism,radiation effects Exodeoxyribonucleases/antagonists & inhibitors Genetic Variation Mutation Nucleic Acid Synthesis Inhibitors Rec A Recombinases/metabolism Ultraviolet Rays
Chemicals
DNA, Bacterial Nucleic Acid Synthesis Inhibitors Rec A Recombinases DNA Polymerase III Exodeoxyribonucleases
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Lu C
Scheuermann R H
Echols H
References (38)
38 references, click to expand
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Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1986-02-00
Pages
619-23
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC322915
Subset
IM
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