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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >Distinct DNA methylation profiles in bone and blood of osteoporotic and healthy postmenopausal women
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Distinct DNA methylation profiles in bone and blood of osteoporotic and healthy postmenopausal women

机译:骨质疏松症和健康绝经后妇女骨骼和血液中的明显DNA甲基化曲线

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DNA methylation affects expression of associated genes and may contribute to the missing genetic effects from genome-wide association studies of osteoporosis. To improve insight into the mechanisms of postmenopausal osteoporosis, we combined transcript profiling with DNA methylation analyses in bone. RNA and DNA were isolated from 84 bone biopsies of postmenopausal donors varying markedly in bone mineral density (BMD). In all, 2529 CpGs in the top 100 genes most significantly associated with BMD were analyzed. The methylation levels at 63 CpGs differed significantly between healthy and osteoporotic women at 10% false discovery rate (FDR). Five of these CpGs at 5% FDR could explain 14% of BMD variation. To test whether blood DNA methylation reflect the situation in bone (as shown for other tissues), an independent cohort was selected and BMD association was demonstrated in blood for 13 of the 63 CpGs. Four transcripts representing inhibitors of bone metabolism-MEPE, SOST, WIF1, and DKK1-showed correlation to a high number of methylated CpGs, at 5% FDR. Our results link DNA methylation to the genetic influence modifying the skeleton, and the data suggest a complex interaction between CpG methylation and gene regulation. This is the first study in the hitherto largest number of postmenopausal women to demonstrate a strong association among bone CpG methylation, transcript levels, and BMD/fracture. This new insight may have implications for evaluation of osteoporosis stage and susceptibility.
机译:DNA甲基化影响相关基因的表达,可能有助于骨质疏松症的基因组关联研究的缺失遗传效应。为了改善洞中骨质疏松症的机制,我们将转录物分析与骨中的DNA甲基化分析合并。从绝经后供体的84个骨活组织检查中分离RNA和DNA,在骨矿物密度(BMD)中显着变化。分析了与BMD最显着相关的前100个基因中的2529个CPG。在10%错误发现率(FDR)的健康和骨质疏松妇女之间,63 CpG的甲基化水平显着不同。这些CPG中的五个在5%FDR可以解释14%的BMD变化。为了测试血液DNA甲基化是否反映了骨中的情况(如其他组织所示),选择了独立的队列,并在63个CPG中的13个中对BMD结合进行了表现。代表骨代谢-MEPE,SOST,WIF1和DKK1的抑制剂的四个转录物显示出与大量甲基化CPG,5%FDR的相关性。我们的结果将DNA甲基化链接到修饰骨架的遗传影响,数据表明CpG甲基化和基因调控之间的复杂相互作用。这是迄今为止最大的绝经后妇女的第一次研究,以证明骨CpG甲基化,转录水平和BMD /骨折之间的强烈关联。这种新的洞察力可能对评估骨质疏松阶段和易感性有影响。

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