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PMID: 14617159 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The majority of inducible DNA repair genes in Mycobacterium tuberculosis are induced independently of RecA.

Molecular microbiology ·Vol. 50 ·No. 3 ·2003-11-00 ·Pages 1031-42

Rand L, Hinds J, Springer B, Sander P, Buxton RS, Davis EO

Abstract

In many species of bacteria most inducible DNA repair genes are regulated by LexA homologues and are dependent on RecA for induction. We have shown previously by analysing the induction of recA that two mechanisms for the induction of gene expression following DNA damage exist in Mycobacterium tuberculosis. Whereas one of these depends on RecA and LexA in the classical way, the other mechanism is independent of both of these proteins and induction occurs in the absence of RecA. Here we investigate the generality of each of these mechanisms by analysing the global response to DNA damage in both wild-type M. tuberculosis and a recA deletion strain of M. tuberculosis using microarrays. This revealed that the majority of the genes that were induced remained inducible in the recA mutant stain. Of particular note most of the inducible genes with known or predicted functions in DNA repair did not depend on recA for induction. Amongst these are genes involved in nucleotide excision repair, base excision repair, damage reversal and recombination. Thus, it appears that this novel mechanism of gene regulation is important for DNA repair in M. tuberculosis.

MeSH Terms
DNA Damage/genetics DNA Repair/genetics Gene Deletion Gene Expression Regulation, Bacterial Kinetics Mitomycin/pharmacology Mycobacterium tuberculosis/drug effects,genetics Rec A Recombinases/genetics,metabolism Reverse Transcriptase Polymerase Chain Reaction/methods SOS Response, Genetics Transcription, Genetic
Chemicals
Mitomycin Rec A Recombinases
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Rand Lucinda
National Institute for Biomedical Research, London, UK.
Hinds Jason
Springer Burkhard
Sander Peter
Buxton Roger S
Davis Elaine O
Article Info
Journal
Molecular microbiology
Abbr.
Mol Microbiol
ISSN
0950-382X
Published
2003-11-00
Pages
1031-42
Language
English
Region
England
NLM ID
8712028
Subset
IM
Grants
Wellcome Trust · 062511 · United Kingdom
Medical Research Council · MC_U117585867 · United Kingdom
Medical Research Council · U.1175.02.002.00013 (85867) · United Kingdom
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