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Genome-scale Capture C promoter interactions implicate effector genes at GWAS loci for bone mineral density

机译:基因组规模的Capture C启动子相互作用在GWAS基因座上牵涉效应子基因,用于骨矿物质密度

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Osteoporosis is a devastating disease with an essential genetic component. GWAS have discovered genetic signals robustly associated with bone mineral density (BMD), but not the precise localization of effector genes. Here, we carry out physical and direct variant to gene mapping in human mesenchymal progenitor cell-derived osteoblasts employing a massively parallel, high resolution Capture C based method in order to simultaneously characterize the genome-wide interactions of all human promoters. By intersecting our Capture C and ATAC-seq data, we observe consistent contacts between candidate causal variants and putative target gene promoters in open chromatin for ~?17% of the 273 BMD loci investigated. Knockdown of two novel implicated genes, ING3 at 'CPED1-WNT16' and EPDR1 at 'STARD3NL', inhibits osteoblastogenesis, while promoting adipogenesis. This approach therefore aids target discovery in osteoporosis, here on the example of two relevant genes involved in the fate determination of mesenchymal progenitors, and can be applied to other common genetic diseases.
机译:骨质疏松是具有重要遗传成分的毁灭性疾病。 GWAS已发现与骨矿物质密度(BMD)密切相关的遗传信号,但与效应基因的精确定位却不强。在这里,我们采用大规模并行,高分辨率Capture C为基础的方法,在人间充质祖细胞衍生的成骨细胞中进行基因定位的物理和直接变异,以同时表征所有人类启动子的全基因组相互作用。通过与Capture C和ATAC-seq数据相交,我们观察到了约273个BMD基因座中约17%的候选因果变体与假定的目标基因启动子在开放染色质中的一致接触。敲低两个新的牵连基因,在'CPED1-WNT16'的ING3和在'STARD3NL'的EPDR1,抑制成骨细胞生成,同时促进脂肪形成。因此,这种方法有助于在骨质疏松症中发现靶标,这里以间充质祖细胞的命运确定所涉及的两个相关基因为例,并且可以应用于其他常见的遗传疾病。

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