Association of the DNA repair gene XPD Asp312Asn polymorphism with p53 gene mutations in tobacco-related non-small cell lung cancer.

نویسندگان

  • Wei-Min Gao
  • Marjorie Romkes
  • Richard D Day
  • Jill M Siegfried
  • James D Luketich
  • Hussam H Mady
  • Mona F Melhem
  • Phouthone Keohavong
چکیده

Lung cancer, a disease related mostly to tobacco smoke exposure and a leading cause of cancer-related death in industrialized countries, is frequently associated with mutations in the p53 tumor suppressor gene. Genetic differences resulting in inter-individual variation in DNA repair capacity may in part account for susceptibility of a cell to genotoxic agents leading to somatic mutations, including p53 mutations, and eventual transformation of a normal cell into a malignant phenotype. The objective of this study is to investigate the relationship between the polymorphisms of two DNA repair genes, the nucleotide excision repair xeroderma pigmentosum group D (XPD) gene (codons 312 and 751) and the base excision repair X-ray repair cross-complementing group 1 (XRCC1) gene (codon 399), and p53 mutations among lung cancer patients. Lung tumors from 204 smokers with non-small cell lung cancer (NSCLC) were analyzed for mutations in exons 5-8 of the p53 gene and genotypes of XPD and XRCC1. p53 mutations were found in 20% (40/204) of the patients. Patients with the XPD codon 312 Asn allele were less likely to have p53 mutations (13.8%) than XPD 312 Asp/Asp (27.3%) [odds ratio (OR) 0.43, 95% confidence interval (CI) 0.20-0.89, P = 0.023]. No association was found between p53 mutations and either XPD Lys751Gln or XRCC1 Arg399Gln. However, the p53 mutation frequency increased with the increased number of the combined genotypes among XPD 312WT (Asp/Asp), XPD 751VT (Lys/Gln or Gln/Gln) or XRCC1 399VT (Arg/Gln or Gln/Gln) (P = 0.01, trend test). These results suggest that individuals who smoke and have the XPD codon 312 Asp/Asp genotype may be at a greater risk of p53 mutations, especially if combined with other polymorphisms that may result in deficient DNA repair.

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منابع مشابه

Null Results in Brief No Association between the XPD 312, 751, or XRCC1 399 Polymorphisms and K-ras Gene Mutation in Smoking Non-Small-Cell Lung Cancer

Lung cancer is strongly associated with exposure to tobacco smoke (1–3). Mutations in the K-ras gene have been found in 20–35% of lung adenocarcinomas of smokers (4–8), compared with about 5–7% in those of nonsmokers (7, 8), suggesting that their formation may be associated with exposure to tobacco smoke carcinogens. DNA repair helps preserve the integrity of the cellular genome by repairing DN...

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No association between the XPD 312, 751, or XRCC1 399 polymorphisms and K-ras gene mutation in smoking non-small-cell lung cancer.

Lung cancer is strongly associated with exposure to tobacco smoke (1–3). Mutations in the K-ras gene have been found in 20–35% of lung adenocarcinomas of smokers (4–8), compared with about 5–7% in those of nonsmokers (7, 8), suggesting that their formation may be associated with exposure to tobacco smoke carcinogens. DNA repair helps preserve the integrity of the cellular genome by repairing DN...

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New p53 Gene Mutation in non-Cancerous Mustard Gas Exposed Lung

Objective Mustard gas (MG) is a poisoning chemical, mutagenic and carcinogenic alkylating agent. It is used during World War I and also Iran-Iraq conflict. The p53 tumor suppressor gene is involved in the pathogenesis of malignant disease. The aim of this study is to determine possible mutation in p53 gene of lung sample from mustard gas exposed patients. Material and Methods Twelve lung bio...

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Polymorphisms in XPD Gene Could Predict Clinical Outcome of Platinum-Based Chemotherapy for Non-Small Cell Lung Cancer Patients: A Meta-Analysis of 24 Studies

OBJECTIVE Xeroderma pigmentosum group D (XPD) is an essential gene involved in the nucleotide excision repair (NER) pathway. Two commonly studied single nucleotide polymorphisms (SNPs) of XPD (Lys751Gln, A>C, rs13181; Asp312Asn, G>A, rs1799793) are implicated in the modulation of DNA repair capacity, thus related to the responses to platinum-based chemotherapy. Here we performed a meta-analysis...

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Common variations of DNA repair genes are associated with response to platinum-based chemotherapy in NSCLCs.

AIM Individual differences in chemosensitivity and clinical outcome of non-small-cell lung cancer (NSCLC) patients may be induced by host inherited factors. We investigated the impact of XPD Arg156Arg, XPD Asp312Asn, XPD Asp711Asp and XPD Lys751Gln gene polymorphisms on the efficacy of platinum-based chemotherapy in NSCLC patients. METHODS A total of 496 were consecutively selected from the A...

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عنوان ژورنال:
  • Carcinogenesis

دوره 24 10  شماره 

صفحات  -

تاریخ انتشار 2003