首页> 外文期刊>BMC Biotechnology >Systematic cross-validation of 454 sequencing and pyrosequencing for the exact quantification of DNA methylation patterns with single CpG resolution
【24h】

Systematic cross-validation of 454 sequencing and pyrosequencing for the exact quantification of DNA methylation patterns with single CpG resolution

机译:454测序和焦磷酸测序的系统交叉验证可准确定量单个CpG分辨率的DNA甲基化模式

获取原文
获取外文期刊封面目录资料

摘要

Background New high-throughput sequencing technologies promise a very sensitive and high-resolution analysis of DNA methylation patterns in quantitative terms. However, a detailed and comprehensive comparison with existing validated DNA methylation analysis methods is not yet available. Therefore, a systematic cross-validation of 454 sequencing and conventional pyrosequencing, both of which offer exact quantification of methylation levels with a single CpG dinucleotide resolution, was performed. Results To this end the methylation patterns of 12 loci ( GSTπ1, p16 INK4a , RASSF1A, SOCS1, MAL, hsa-mir-1-1, hsa-mir-9-3, hsa-mir-34a, hsa-mir-596, hsa-mir-663, MINT31 , and LINE-1 ) were analyzed in ten primary hepatocellular carcinoma specimens. After applying stringent quality control criteria, 35749 sequences entered further analysis. The methylation level of individual CpG dinucleotides obtained by 454 sequencing was systematically compared with the corresponding values obtained by conventional pyrosequencing. Statistical analyses revealed an excellent concordance of methylation levels for all individual CpG dinucleotides under study (r2 = 0.927). Conclusions Our results confirm that 454 sequencing of bisulfite treated genomic DNA provides reliable high quality quantitative methylation data and identify MAL, hsa-mir-9-3, hsa-mir-596, and hsa-mir-663 as new targets of aberrant DNA methylation in human hepatocelluar carcinoma. In addition, the single molecule resolution of 454 sequencing provides unprecedented information about the details of DNA methylation pattern heterogeneity in clinical samples.
机译:背景技术新的高通量测序技术有望以定量的方式对DNA甲基化模式进行非常灵敏和高分辨率的分析。但是,尚无法与现有的经过验证的DNA甲基化分析方法进行详细而全面的比较。因此,对454测序和常规焦磷酸测序进行了系统的交叉验证,二者均提供了具有单个CpG二核苷酸分辨率的甲基化水平的精确定量。结果为此,共有12个基因座(GSTπ1,p16 INK4a ,RASSF1A,SOCS1,MAL,hsa-mir-1-1,hsa-mir-在十个原发性肝细胞癌标本中分析了9-3,hsa-mir-34a,hsa-mir-596,hsa-mir-663,MINT31和LINE-1。在应用严格的质量控制标准后,35749个序列进入了进一步分析。系统地比较了通过454测序获得的单个CpG二核苷酸的甲基化水平与通过常规焦磷酸测序获得的相应值。统计分析表明,所研究的所有单个CpG二核苷酸的甲基化水平均具有极好的一致性(r 2 = 0.927)。结论我们的结果证实,亚硫酸氢盐处理的基因组DNA的454测序可提供可靠的高质量定量甲基化数据,并将MAL,hsa-mir-9-3,hsa-mir-596和hsa-mir-663识别为异常DNA甲基化的新靶标在人类肝细胞癌中此外,454测序的单分子分辨率可提供有关临床样品中DNA甲基化模式异质性细节的空前信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号