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Multiple analyses of large-scale genome-wide association study highlight new risk pathways in lumbar spine bone mineral density

机译:大规模全基因组关联研究的多项分析凸显了腰椎骨矿物质密度的新风险途径

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摘要

Osteoporosis is a common human complex disease. It is mainly characterized by low bone mineral density (BMD) and low-trauma osteoporotic fractures (OF). Until now, a large proportion of heritability has yet to be explained. The existing large-scale genome-wide association studies (GWAS) provide strong support for the investigation of osteoporosis mechanisms using pathway analysis. Recent findings showed that different risk pathways may be involved in BMD in different tissues. Here, we conducted multiple pathway analyses of a large-scale lumbar spine BMD GWAS dataset (2,468,080 SNPs and 31,800 samples) using two published gene-based analysis software including ProxyGeneLD and the PLINK. Using BMD genes from ProxyGeneLD, we identified 51 significant KEGG pathways with adjusted P<0.01. Using BMD genes from PLINK, we identified 38 significant KEGG pathways with adjusted P<0.01. Interestingly, 33 pathways are shared in both methods. In summary, we not only identified the known risk pathway such as Wnt signaling, in which the top GWAS variants are significantly enriched, but also highlight some new risk pathways. Interestingly, evidence from further supports the involvement of these pathways in MBD.
机译:骨质疏松症是人类常见的复杂疾病。它的主要特征是骨密度低(BMD)和创伤性骨质疏松性骨折(OF)低。到现在为止,大部分遗传力尚未解释。现有的大规模全基因组关联研究(GWAS)为使用途径分析研究骨质疏松机制提供了有力的支持。最近的发现表明,不同组织中的BMD可能涉及不同的风险途径。在这里,我们使用包括ProxyGeneLD和PLINK在内的两个基于基因的分析软件对大型腰椎BMD GWAS数据集(2,468,080个SNP和31,800个样本)进行了多途径分析。使用来自ProxyGeneLD的BMD基因,我们确定了51条重要的KEGG途径,其P <0.01。使用来自PLINK的BMD基因,我们确定了38条重要的KEGG途径,其P <0.01。有趣的是,两种方法共有33条途径。总之,我们不仅确定了已知的风险途径,例如Wnt信号传导,其中最丰富的GWAS变异显着丰富,而且还重点介绍了一些新的风险途径。有趣的是,来自证据的证据进一步支持了这些途径参与MBD。

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