Identification of 153 new loci associated with heel bone mineral density and functional involvement of GPC6 in osteoporosis

David Evans, Brent Richards and colleagues carried out a genome-wide association study in 142,487 individuals from the UK Biobank and identified 153 new loci associated with heel bone mineral density. They also conducted in vivo studies that implicated GPC6 and several other genes in osteoporosis. O...

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Veröffentlicht in:Nature genetics 2017-10, Vol.49 (10), p.1468-1475
Hauptverfasser: Kemp, John P, Morris, John A, Medina-Gomez, Carolina, Forgetta, Vincenzo, Warrington, Nicole M, Youlten, Scott E, Zheng, Jie, Gregson, Celia L, Grundberg, Elin, Trajanoska, Katerina, Logan, John G, Pollard, Andrea S, Sparkes, Penny C, Ghirardello, Elena J, Allen, Rebecca, Leitch, Victoria D, Butterfield, Natalie C, Komla-Ebri, Davide, Adoum, Anne-Tounsia, Curry, Katharine F, White, Jacqueline K, Kussy, Fiona, Greenlaw, Keelin M, Xu, Changjiang, Harvey, Nicholas C, Cooper, Cyrus, Adams, David J, Greenwood, Celia M T, Maurano, Matthew T, Kaptoge, Stephen, Rivadeneira, Fernando, Tobias, Jonathan H, Croucher, Peter I, Ackert-Bicknell, Cheryl L, Bassett, J H Duncan, Williams, Graham R, Richards, J Brent, Evans, David M
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Zusammenfassung:David Evans, Brent Richards and colleagues carried out a genome-wide association study in 142,487 individuals from the UK Biobank and identified 153 new loci associated with heel bone mineral density. They also conducted in vivo studies that implicated GPC6 and several other genes in osteoporosis. Osteoporosis is a common disease diagnosed primarily by measurement of bone mineral density (BMD). We undertook a genome-wide association study (GWAS) in 142,487 individuals from the UK Biobank to identify loci associated with BMD as estimated by quantitative ultrasound of the heel. We identified 307 conditionally independent single-nucleotide polymorphisms (SNPs) that attained genome-wide significance at 203 loci, explaining approximately 12% of the phenotypic variance. These included 153 previously unreported loci, and several rare variants with large effect sizes. To investigate the underlying mechanisms, we undertook (1) bioinformatic, functional genomic annotation and human osteoblast expression studies; (2) gene-function prediction; (3) skeletal phenotyping of 120 knockout mice with deletions of genes adjacent to lead independent SNPs; and (4) analysis of gene expression in mouse osteoblasts, osteocytes and osteoclasts. The results implicate GPC6 as a novel determinant of BMD, and also identify abnormal skeletal phenotypes in knockout mice associated with a further 100 prioritized genes.
ISSN:1061-4036
1546-1718
DOI:10.1038/ng.3949