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Methylation-specific PCR: a novel PCR assay for methylation status of CpG islands.

Proceedings of the National Academy of Sciences · 1996 · Vol. 93(18) · pp. 9821–9826
James G. HermanJeremy R. GraffSanna MyöhänenB D NelkinS B Baylin

Abstract

Precise mapping of DNA methylation patterns in CpG islands has become essential for understanding diverse biological processes such as the regulation of imprinted genes, X chromosome inactivation, and tumor suppressor gene silencing in human cancer. We describe a new method, MSP (methylation-specific PCR), which can rapidly assess the methylation status of virtually any group of CpG sites within a CpG island, independent of the use of methylation-sensitive restriction enzymes. This assay entails initial modification of DNA by sodium bisulfite, converting all unmethylated, but not methylated, cytosines to uracil, and subsequent amplification with primers specific for methylated versus unmethylated DNA. MSP requires only small quantities of DNA, is sensitive to 0.1% methylated alleles of a given CpG island locus, and can be performed on DNA extracted from paraffin-embedded samples. MSP eliminates the false positive results inherent to previous PCR-based approaches which relied on differential restriction enzyme cleavage to distinguish methylated from unmethylated DNA. In this study, we demonstrate the use of MSP to identify promoter region hypermethylation changes associated with transcriptional inactivation in four important tumor suppressor genes (p16, p15, E-cadherin, and von Hippel-Lindau) in human cancer.

Epigenetics and DNA MethylationGenetic Syndromes and ImprintingCancer-related gene regulationCpG siteBiologyDNA methylationMolecular biologyMethylationIllumina Methylation AssayBisulfite sequencingMethylated DNA immunoprecipitationDNARestriction enzyme

MeSH terms

Base SequenceCarrier ProteinsCell LineHumansLigasesMethylationMolecular Sequence DataProteinsRestriction MappingCadherinsPolymerase Chain ReactionGenes, Tumor SuppressorAntisense Elements (Genetics)DNA PrimersCell Cycle Proteins

Funding

  • Academy of Finland
  • National Institutes of Health
Citations
5,649
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References
Role for DNA methylation in genomic imprinting
Trends in Genetics · 1994 · 1,706 citations
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