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首页> 外文期刊>Scientific reports. >Functional annotation of HOT regions in the human genome: implications for human disease and cancer
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Functional annotation of HOT regions in the human genome: implications for human disease and cancer

机译:人类基因组中HOT区的功能注释:对人类疾病和癌症的影响

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Advances in genome-wide association studies (GWAS) and large-scale sequencing studies have resulted in an impressive and growing list of disease- and trait-associated genetic variants. Most studies have emphasised the discovery of genetic variation in coding sequences, however, the noncoding regulatory effects responsible for human disease and cancer biology have been substantially understudied. To better characterise the cis -regulatory effects of noncoding variation, we performed a comprehensive analysis of the genetic variants in HOT (high-occupancy target) regions, which are considered to be one of the most intriguing findings of recent large-scale sequencing studies. We observed that GWAS variants that map to HOT regions undergo a substantial net decrease and illustrate development-specific localisation during haematopoiesis. Additionally, genetic risk variants are disproportionally enriched in HOT regions compared with LOT (low-occupancy target) regions in both disease-relevant and cancer cells. Importantly, this enrichment is biased toward disease- or cancer-specific cell types. Furthermore, we observed that cancer cells generally acquire cancer-specific HOT regions at oncogenes through diverse mechanisms of cancer pathogenesis. Collectively, our findings demonstrate the key roles of HOT regions in human disease and cancer and represent a critical step toward further understanding disease biology, diagnosis, and therapy.
机译:全基因组关联研究(GWAS)和大规模测序研究的进步已导致令人印象深刻且与疾病和性状相关的遗传变异列表不断增加。大多数研究都强调了编码序列中遗传变异的发现,但是,对人类疾病和癌症生物学负责的非编码调节作用已进行了充分的研究。为了更好地表征非编码变异的顺式调控作用,我们对HOT(高占用目标)区域的遗传变异进行了全面分析,这被认为是最近大规模测序研究中最引人入胜的发现之一。我们观察到,映射到HOT区的GWAS变体经历了明显的净减少,并说明了造血过程中特定于发育的定位。此外,与疾病相关和癌细胞中的LOT(低占用率目标)区域相比,HOT地区的遗传风险变异不成比例地富集。重要的是,这种富集倾向于特定于疾病或癌症的细胞类型。此外,我们观察到癌细胞通常通过多种癌症发病机理在癌基因上获得特定于癌症的HOT区。总的来说,我们的发现证明了HOT区在人类疾病和癌症中的关键作用,并且是进一步了解疾病生物学,诊断和治疗的关键一步。

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