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首页> 外文期刊>Genome Biology >Genome-wide assessment of imprinted expression in human cells.Comments Comment in: Genome Biol. 2011;12(3):106; PMID: 21418582
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Genome-wide assessment of imprinted expression in human cells.Comments Comment in: Genome Biol. 2011;12(3):106; PMID: 21418582

机译:在人类细胞中印迹表达的全基因组评估。注释:基因组生物学。 2011; 12(3):106; PMID:21418582

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摘要

BACKGROUND: Parent-of-origin-dependent expression of alleles, imprinting, has been suggested to impact a substantial proportion of mammalian genes. Its discovery requires allele-specific detection of expressed transcripts, but in some cases detected allelic expression bias has been interpreted as imprinting without demonstrating compatible transmission patterns and excluding heritable variation. Therefore, we utilized a genome-wide tool exploiting high density genotyping arrays in parallel measurements of genotypes in RNA and DNA to determine allelic expression across the transcriptome in lymphoblastoid cell lines (LCLs) and skin fibroblasts derived from families. RESULTS: We were able to validate 43% of imprinted genes with previous demonstration of compatible transmission patterns in LCLs and fibroblasts. In contrast, we only validated 8% of genes suggested to be imprinted in the literature, but without clear evidence of parent-of-origin-determined expression. We also detected five novel imprinted genes and delineated regions of imprinted expression surrounding annotated imprinted genes. More subtle parent-of-origin-dependent expression, or partial imprinting, could be verified in four genes. Despite higher prevalence of monoallelic expression, immortalized LCLs showed consistent imprinting in fewer loci than primary cells. Random monoallelic expression has previously been observed in LCLs and we show that random monoallelic expression in LCLs can be partly explained by aberrant methylation in the genome. CONCLUSIONS: Our results indicate that widespread parent-of-origin-dependent expression observed recently in rodents is unlikely to be captured by assessment of human cells derived from adult tissues where genome-wide assessment of both primary and immortalized cells yields few new imprinted loci.CAS Registry/EC Number/Name of Substance 2353-33-5 (decitabine). 320-67-2 (Azacitidine).
机译:背景:已提出等位基因的原产地依赖性表达,影响了很大比例的哺乳动物基因。它的发现需要等位基因特异性检测表达的转录本,但在某些情况下,检测到的等位基因表达偏差已被解释为印迹,而没有证明兼容的传输模式和可遗传的变异。因此,我们利用全基因组工具,利用高密度基因分型阵列并行测量RNA和DNA的基因型,以确定在淋巴母细胞系(LCL)和来源于家族的皮肤成纤维细胞中,整个转录组的等位基因表达。结果:我们能够验证LCL和成纤维细胞中相容的传输模式,证明了43%的印迹基因。相比之下,我们仅验证了建议在文献中印记的基因的8%,但没有明确的证据表明其由母体决定。我们还检测了五个新的印迹基因和标记的印迹基因周围的印迹表达的描绘区域。可以在四个基因中验证更微妙的起源于父本的表达或部分印迹。尽管单等位基因表达的患病率较高,但永生的LCL在比原代细胞更少的基因座中显示出一致的印迹。先前已在LCL中观察到随机单等位基因表达,并且我们显示LCL中的随机单等位基因表达可以部分地由基因组中的异常甲基化解释。结论:我们的结果表明,最近在啮齿动物中观察到的广泛的起源于母本的表达不太可能被成年组织衍生的人细胞评估所捕获,而原代和永生化细胞的全基因组评估几乎没有产生新的印迹基因座。 CAS注册处/ EC编号/物质名称2353-33-5(地西他滨)。 320-67-2(阿扎胞苷)。

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