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Using long-read sequencing to detect imprinted DNA methylation

机译:使用长读取测序检测印迹DNA甲基化

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摘要

Systematic variation in the methylation of cytosines at CpG sites plays a critical role in early development of humans and other mammals. Of particular interest are regions of differential methylation between parental alleles, as these often dictate monoallelic gene expression, resulting in parent of origin specific control of the embryonic transcriptome and subsequent development, in a phenomenon known as genomic imprinting. Using long-read nanopore sequencing we show that, with an average genomic coverage of similar to 10, it is possible to determine both the level of methylation of CpG sites and the haplotype from which each read arises. The long-read property is exploited to characterize, using novel methods, both methylation and haplotype for reads that have reduced basecalling precision compared to Sanger sequencing. We validate the analysis both through comparison of nanopore-derived methylation patterns with those from Reduced Representation Bisulfite Sequencing data and through comparison with previously reported data. Our analysis successfully identifies known imprinting control regions (ICRs) as well as some novel differentially methylated regions which, due to their proximity to hitherto unknown monoallelically expressed genes, may represent new ICRs.
机译:CPG位点的胞嘧啶甲基化的系统变化在人类和其他哺乳动物的早期发育中起重要作用。特别感兴趣的是父母等位基因之间的差异甲基化区域,因为这些通常决定单独的基因表达,导致胚胎转录组的原始特异性对胚胎转录组和随后的发育中的父母进行父母,以称为基因组印记的现象。使用长读数纳米孔测序,我们表明,具有类似于10的平均基因组覆盖率,可以确定CpG位点的甲基化水平和每个读取的单倍型。利用新型方法,使用新方法,使用新方法,用于与Sanger测序相比具有降低的基础所有精度的读取的甲基化和单倍型的读取性能。通过将纳米孔衍生的甲基化模式与来自伯硫酸氢盐序列测序数据的减少的甲基化模式的比较以及与先前报告的数据进行比较来验证分析。我们的分析成功地识别了已知的压印控制区域(ICRS)以及一些新型差异甲基化区域,由于它们对迄今未知的单次表达基因的邻近,可以代表新的ICRS。

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  • 来源
    《Nucleic Acids Research》 |2019年第8期|共14页
  • 作者单位

    Walter &

    Eliza Hall Inst Med Res 1G Royal Parade Parkville Vic 3052 Australia;

    Walter &

    Eliza Hall Inst Med Res 1G Royal Parade Parkville Vic 3052 Australia;

    Australian Genome Res Facil 305 Grattan St Melbourne Vic 3000 Australia;

    Walter &

    Eliza Hall Inst Med Res 1G Royal Parade Parkville Vic 3052 Australia;

    Walter &

    Eliza Hall Inst Med Res 1G Royal Parade Parkville Vic 3052 Australia;

    Australian Genome Res Facil 305 Grattan St Melbourne Vic 3000 Australia;

    Australian Genome Res Facil 305 Grattan St Melbourne Vic 3000 Australia;

    Walter &

    Eliza Hall Inst Med Res 1G Royal Parade Parkville Vic 3052 Australia;

    Walter &

    Eliza Hall Inst Med Res 1G Royal Parade Parkville Vic 3052 Australia;

    Walter &

    Eliza Hall Inst Med Res 1G Royal Parade Parkville Vic 3052 Australia;

    Walter &

    Eliza Hall Inst Med Res 1G Royal Parade Parkville Vic 3052 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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