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PMID: 16426742 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Overexpression of the DNA mismatch repair factor, PMS2, confers hypermutability and DNA damage tolerance.

Cancer letters ·Vol. 244 ·No. 2 ·2006-12-08 ·Pages 195-202

Gibson SL, Narayanan L, Hegan DC, Buermeyer AB, Liskay RM, Glazer PM

Abstract

Inherited defects in genes associated with DNA mismatch repair (MMR) have been linked to familial colorectal cancer. Cells deficient in MMR are genetically unstable and demonstrate a tolerance phenotype in response to certain classes of DNA damage. Some sporadic human cancers also show abnormalities in MMR gene function, typically due to diminished expression of one of the MutL homologs, MLH1. Here, we report that overexpression of the MutL homolog, human PMS2, can also cause a disruption of the MMR pathway in mammalian cells, resulting in hypermutability and DNA damage tolerance. A mouse fibroblast cell line carrying a recoverable lambda phage shuttle vector for mutation detection was transfected with either a vector designed to express hPMS2 or with an empty vector control. Cells overexpressing hPMS2 were found to have elevated spontaneous mutation frequencies at the cII reporter gene locus. They also showed an increase in the level of mutations induced by the alkylating agent, methynitrosourea (MNU). Clonogenic survival assays demonstrated increased survival of the PMS2-overexpressing cells following exposure to MNU, consistent with the induction of a damage tolerance phenotype. Similar results were seen in cells expressing a mutant PMS2 gene, containing a premature stop codon at position 134 and representing a variant found in an individual with familial colon cancer. These results show that dysregulation of PMS2 gene expression can disrupt MMR function in mammalian cells and establish an additional carcinogenic mechanism by which cells can develop genetic instability and acquire resistance to cytotoxic cancer therapies.

MeSH Terms
Adenosine Triphosphatases/genetics,metabolism Animals Cells, Cultured DNA Damage DNA Mismatch Repair DNA Repair Enzymes/genetics,metabolism DNA-Binding Proteins/genetics,metabolism Fibroblasts/cytology,drug effects,metabolism Humans Methylnitrosourea/toxicity Mice Mismatch Repair Endonuclease PMS2 Mutagenesis Mutation
Chemicals
DNA-Binding Proteins Methylnitrosourea Adenosine Triphosphatases PMS2 protein, human Mismatch Repair Endonuclease PMS2 DNA Repair Enzymes
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Gibson Shannon L
Department of Therapeutic Radiology and Genetics, Yale University School of Medicine, P.O. Box 208040, New Haven, CT 06520-8040, USA.
Narayanan Latha
Hegan Denise Campisi
Buermeyer Andrew B
Liskay R Michael
Glazer Peter M
Article Info
Journal
Cancer letters
Abbr.
Cancer Lett
ISSN
0304-3835
Published
2006-12-08
Epub
2006-00-19
Pages
195-202
Language
English
Region
Ireland
NLM ID
7600053
Subset
IM
Grants
NIEHS NIH HHS · R01 ES05775 · United States
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