Scanning the Cystic Fibrosis Transmembrane Conductance Regulator Gene Using High-Resolution DNA Melting Analysis
- 1 November 2007
- journal article
- Published by Oxford University Press (OUP) in Clinical Chemistry
- Vol. 53 (11), 1891-1898
- https://doi.org/10.1373/clinchem.2007.092361
Abstract
Background: Complete gene analysis of the cystic fibrosis transmembrane conductance regulator gene (CFTR) by scanning and/or sequencing is seldom performed because of the cost, time, and labor involved. High-resolution DNA melting analysis is a rapid, closed-tube alternative for gene scanning and genotyping. Methods: The 27 exons of CFTR were amplified in 37 PCR products under identical conditions. Common variants in 96 blood donors were identified in each exon by high-resolution melting on a LightScanner®. We then performed a subsequent blinded study on 30 samples enriched for disease-causing variants, including all 23 variants recommended by the American College of Medical Genetics and 8 additional, well-characterized variants. Results: We identified 22 different sequence variants in 96 blood donors, including 4 novel variants and the disease-causing p.F508del. In the blinded study, all 40 disease-causing heterozygotes (29 unique) were detected, including 1 new probable disease-causing variant (c.3500-2A>T). The number of false-positive amplicons was decreased 96% by considering the 6 most common heterozygotes. The melting patterns of most heterozygotes were unique (37 of 40 pairs within the same amplicon), the exceptions being p.F508del vs p.I507del, p.G551D vs p.R553X, and p.W1282X vs c.4002A>G. The homozygotes p.G542X, c.2789 + 5G>A, and c.3849 + 10kbC>T were directly identified, but homozygous p.F508del was not. Specific genotyping of these exceptions, as well as genotyping of the 5T allele of intron 8, was achieved by unlabeled-probe and small-amplicon melting assays. Conclusions: High-resolution DNA melting methods provide a rapid and accurate alternative for complete CFTR analysis. False positives can be decreased by considering the melting profiles of common variants.Keywords
Funding Information
- National Institutes of Health (GM072419, GM073396)
This publication has 37 references indexed in Scilit:
- RET Proto-Oncogene Genotyping Using Unlabeled Probes, the Masking Technique, and Amplicon High-Resolution Melting AnalysisThe Journal of Molecular Diagnostics, 2007
- Instrument Comparison for Heterozygote Scanning of Single and Double Heterozygotes: A Correction and Extension of Herrmann et al., Clin Chem 2006;52:494-503Clinical Chemistry, 2007
- A Comparison of High-Resolution Melting Analysis With Denaturing High-Performance Liquid Chromatography for Mutation Scanning: Cystic Fibrosis Transmembrane Conductance Regulator Gene as a ModelAmerican Journal of Clinical Pathology, 2005
- Cystic fibrosis population carrier screening: 2004 revision of American College of Medical Genetics mutation panelGenetics in Medicine, 2004
- Detection ofCFTR mutations using temporal temperature gradient gel electrophoresisElectrophoresis, 2004
- Genotyping of Single-Nucleotide Polymorphisms by High-Resolution Melting of Small AmpliconsClinical Chemistry, 2004
- Cystic fibrosis: A worldwide analysis ofCFTR mutations?correlation with incidence data and application to screeningHuman Mutation, 2002
- Laboratory standards and guidelines for population-based cystic fibrosis carrier screeningGenetics in Medicine, 2001
- Analysis of the 27 exons and flanking regions of the cystic fibrosis gene: 40 different mutations account for 91.2% of the mutant alleles in Southern FranceHuman Molecular Genetics, 1993
- Molecular characterization of cystic fibrosis: 16 Novel mutations identified by analysis of the whole cystic fibrosis conductance transmembrane regulator (CFTR) coding regions and splice site junctionsGenomics, 1992