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Human debrisoquine hydroxylase gene polymorphisms in cancer patients and controls
H Sugimura1, N E Caporaso, G L Shaw
1Laboratory of Human Carcinogenesis, NCI, NIH, Bethesda, MD 20892.
Abstract:
The extensive metabolizer phenotype of debrisoquine has been associated with increased risk of lung cancer, and it has been proposed that a molecular test for this phenotype is feasible. DNA restriction fragment length polymorphisms of the human debrisoquine 4-hydroxylase gene locus (CYP2D6), and the metabolic phenotype for debrisoquine have been studied in a group of healthy volunteers, a group of lung cancer patients and two control groups (chronic obstructive pulmonary disease patients and patients with cancers at sites other than the lung). Confirmation of four distinct XbaI allelic fragments (44, 29, 16/9 and 11.5 kb), previously identified among caucasians, was obtained. The 29 kb alleles were the most frequently observed in both poor and extensive metabolizers of debrisoquine. Alleles of 44 kb were found with approximately equal frequency among both poor and extensive metabolizers. The data are consistent with the hypothesis that the 11.5 and 44 kb fragments are associated with mutant alleles of the CYP2D6 gene, but the power of phenotype prediction by these alleles was less than that previously reported for a European (Swiss-German) population. Similarly, the data also show that 8% of 29 kb homozygotes are poor metabolizers (indicating that at least 28% of 29 kb fragments are also associated with mutant alleles) and are not therefore informative for predicting the debrisoquine phenotype. The 16/9 allele may represent either wild-type or mutant alleles. Restriction fragments of 44 kb were found more frequently among cancer patients and chronic obstructive pulmonary disease patients (30%) than among the healthy volunteer group (7%). Genotypes observed were not related to lung tumor histology. Furthermore, at least three EcoRI alleles were found to be in linkage disequilibrium with the 'mutant' 44 kb allele. These data suggest that the 44 kb allele can comprise three distinct haplotypes, in contrast to studies of a European population. These studies indicate that no single mutant CYP2D6 allele as determined by EcoRI appears to be associated with lung cancer, despite the findings that these patients are invariably of the extensive metabolizer phenotype.
Insights
Extensive debrisoquine metabolism, linked to lung cancer risk, was studied using CYP2D6 gene polymorphisms. The 44 kb allele was more frequent in cancer patients, but no single mutant CYP2D6 allele strongly predicted lung cancer risk.
Area of Science:
- Pharmacogenetics
- Molecular Biology
- Cancer Research
Background:
- The extensive metabolizer phenotype of debrisoquine is linked to an increased lung cancer risk.
- Molecular testing for this phenotype has been proposed as feasible.
Purpose of the Study:
- To investigate the association between debrisoquine 4-hydroxylase gene (CYP2D6) polymorphisms and metabolic phenotypes.
- To assess the predictive power of CYP2D6 alleles for debrisoquine metabolism and lung cancer risk.
Main Methods:
- Studied DNA restriction fragment length polymorphisms (RFLPs) of the CYP2D6 gene locus.
- Assessed debrisoquine metabolic phenotype in healthy volunteers, lung cancer patients, COPD patients, and other cancer patients.
- Analyzed XbaI and EcoRI allelic fragments and their linkage disequilibrium.
Main Results:
- Confirmed four XbaI allelic fragments (44, 29, 16/9, 11.5 kb); 29 kb alleles were most frequent in both poor and extensive metabolizers.
- The 44 kb allele was found more frequently in cancer patients (30%) and COPD patients (30%) than in healthy volunteers (7%).
- The 44 kb allele was associated with mutant CYP2D6 alleles, but its predictive power was lower than previously reported; no single EcoRI-determined mutant CYP2D6 allele was definitively associated with lung cancer.
Conclusions:
- While the 44 kb allele is more frequent in cancer patients, it does not serve as a reliable predictor of lung cancer risk.
- The complex allelic and haplotypic variations of CYP2D6 in this population limit its utility for predicting debrisoquine phenotype and lung cancer association.
- Further research is needed to understand the genetic factors contributing to lung cancer risk in extensive debrisoquine metabolizers.