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PMID: 18086781 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Inherited predisposition of lung cancer: a hierarchical modeling approach to DNA repair and cell cycle control pathways.

Hung RJ, Baragatti M, Thomas D, McKay J, Szeszenia-Dabrowska N, Zaridze D, Lissowska J, Rudnai P, Fabianova E, Mates D, Foretova L, Janout V, Bencko V, Chabrier A, Moullan N, Canzian F, Hall J, Boffetta P, Brennan P

Abstract

The DNA repair systems maintain the integrity of the human genome and cell cycle checkpoints are a critical component of the cellular response to DNA damage. We hypothesized that genetic variants in DNA repair and cell cycle control pathways will influence the predisposition to lung cancer, and studied 27 variants in 17 DNA repair enzymes and 10 variants in eight cell cycle control genes in 1,604 lung cancer patients and 2,053 controls. To improve the estimation of risks for specific variants, we applied a Bayesian approach in which we allowed the prior knowledge regarding the evolutionary biology and physicochemical properties of the variant to be incorporated into the hierarchical model. Based on the estimation from the hierarchical modeling, subjects who carried OGG1 326C/326C homozygotes, MGMT 143V or 178R, and CHEK2 157I had an odds ratio of lung cancer equal to 1.45 [95% confidence interval (95% CI), 1.05-2.00], 1.18 (95% CI, 1.01-1.40), and 1.58 (95% CI, 1.14-2.17). The association of CHEK2 157I seems to be overestimated in the conventional analysis. Nevertheless, this association seems to be robust in the hierarchical modeling. None of the pathways seem to have a prominent effect. In general, our study supports the notion that sequence variation may explain at least some of the variation of inherited susceptibility. In particular, further investigation of OGG1, MGMT, and CHEK2 focusing on the genetic regions where the present markers are located or the haplotype blocks tightly linked with these markers might be warranted.

MeSH Terms
Adult Aged Bayes Theorem Biomarkers, Tumor/genetics Cell Cycle/genetics Checkpoint Kinase 2 DNA Glycosylases/genetics DNA Modification Methylases/genetics DNA Repair/genetics DNA Repair Enzymes/genetics Female Genetic Predisposition to Disease Humans Lung Neoplasms/genetics Male Middle Aged Polymerase Chain Reaction Polymorphism, Single Nucleotide Protein Serine-Threonine Kinases/genetics Risk Factors Smoking/adverse effects Tumor Suppressor Proteins/genetics
Chemicals
Biomarkers, Tumor Tumor Suppressor Proteins DNA Modification Methylases MGMT protein, human Checkpoint Kinase 2 CHEK2 protein, human Protein Serine-Threonine Kinases DNA Glycosylases oxoguanine glycosylase 1, human DNA Repair Enzymes
Authors & Affiliations
19 authors, click to expand affiliations / ORCID
Hung Rayjean J
IARC, 150 cours Albert Thomas, F-69372 Lyon Cedex 08, France. hung@iarc.fr
Baragatti Meili
Thomas Duncan
McKay James
Szeszenia-Dabrowska Neonila
Zaridze David
Lissowska Jolanta
Rudnai Peter
Fabianova Eleonora
Mates Dana
Foretova Lenka
Janout Vladimir
Bencko Vladimir
Chabrier Amelie
Moullan Norman
Canzian Federico
Hall Janet
Boffetta Paolo
Brennan Paul
Article Info
Journal
Cancer epidemiology, biomarkers & prevention : a publication of the American Association for Cancer Research, cosponsored by the American Society of Preventive Oncology
Abbr.
Cancer Epidemiol Biomarkers Prev
ISSN
1055-9965
Published
2007-12-00
Pages
2736-44
Language
English
Region
United States
NLM ID
9200608
Subset
IM
Grants
NCI NIH HHS · R01 CA092039-04A1 · United States
NCI NIH HHS · R03 CA 119704-01 · United States
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