Lo Y M, Wong I H, Zhang J, Tein M S, Ng M H, Hjelm N M
Department of Chemical Pathology, The Chinese University of Hong Kong, Prince of Wales Hospital, Shatin, New Territories.
Cancer Res. 1999 Aug 15;59(16):3899-903.
We have developed a quantitative method for methylation analysis of the p16 gene based on real-time methylation-specific PCR (MSP). Real-time MSP is sensitive enough to detect down to 10 genome equivalents of the methylated p16 sequence. Application of real-time MSP to DNA from tumor-derived cell lines revealed complete concordance with conventional MSP analysis. Quantitative data generated by real-time MSP were expressed as the methylation index, which was defined as the percentage of bisulfite-converted DNA that consisted of methylated target sequences. The methylation index was shown to be inversely correlated with p16 gene transcription during demethylation treatment of cell lines with 5-aza-2'-deoxycytidine. The application of real-time MSP to bone marrow aspirates from patients with multiple myeloma revealed complete concordance with conventional MSP analysis. Real-time quantitative MSP may have applications in elucidating diverse biological processes involving DNA methylation and may become a valuable diagnostic tool for detecting tumor-associated epigenetic changes in cancer patients.
我们已经开发出一种基于实时甲基化特异性PCR(MSP)的p16基因甲基化分析定量方法。实时MSP灵敏度足以检测低至10个基因组当量的甲基化p16序列。将实时MSP应用于肿瘤来源细胞系的DNA,结果显示与传统MSP分析完全一致。实时MSP产生的定量数据以甲基化指数表示,甲基化指数定义为包含甲基化靶序列的亚硫酸氢盐转化DNA的百分比。在用5-氮杂-2'-脱氧胞苷对细胞系进行去甲基化处理期间,甲基化指数与p16基因转录呈负相关。将实时MSP应用于多发性骨髓瘤患者的骨髓抽吸物,结果显示与传统MSP分析完全一致。实时定量MSP可能在阐明涉及DNA甲基化的各种生物学过程中具有应用价值,并且可能成为检测癌症患者肿瘤相关表观遗传变化的有价值诊断工具。