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PMID: 22792070 Published · ppublish English Journal Article Meta-Analysis Research Support, Non-U.S. Gov't

Meta-analysis of genome-wide scans for total body BMD in children and adults reveals allelic heterogeneity and age-specific effects at the WNT16 locus.

PLoS genetics ·Vol. 8 ·No. 7 ·2012-07-00 ·Pages e1002718

Medina-Gomez C, Kemp JP, Estrada K, Eriksson J, Liu J, Reppe S, Evans DM, Heppe DH, Vandenput L, Herrera L, Ring SM, Kruithof CJ, Timpson NJ, Zillikens MC, Olstad OK, Zheng HF, Richards JB, St Pourcain B, Hofman A, Jaddoe VW, Smith GD, Lorentzon M, Gautvik KM, Uitterlinden AG, Brommage R, Ohlsson C, Tobias JH, Rivadeneira F

Abstract

To identify genetic loci influencing bone accrual, we performed a genome-wide association scan for total-body bone mineral density (TB-BMD) variation in 2,660 children of different ethnicities. We discovered variants in 7q31.31 associated with BMD measurements, with the lowest P = 4.1 × 10(-11) observed for rs917727 with minor allele frequency of 0.37. We sought replication for all SNPs located ± 500 kb from rs917727 in 11,052 additional individuals from five independent studies including children and adults, together with de novo genotyping of rs3801387 (in perfect linkage disequilibrium (LD) with rs917727) in 1,014 mothers of children from the discovery cohort. The top signal mapping in the surroundings of WNT16 was replicated across studies with a meta-analysis P = 2.6 × 10(-31) and an effect size explaining between 0.6%-1.8% of TB-BMD variance. Conditional analyses on this signal revealed a secondary signal for total body BMD (P = 1.42 × 10(-10)) for rs4609139 and mapping to C7orf58. We also examined the genomic region for association with skull BMD to test if the associations were independent of skeletal loading. We identified two signals influencing skull BMD variation, including rs917727 (P = 1.9 × 10(-16)) and rs7801723 (P = 8.9 × 10(-28)), also mapping to C7orf58 (r(2) = 0.50 with rs4609139). Wnt16 knockout (KO) mice with reduced total body BMD and gene expression profiles in human bone biopsies support a role of C7orf58 and WNT16 on the BMD phenotypes observed at the human population level. In summary, we detected two independent signals influencing total body and skull BMD variation in children and adults, thus demonstrating the presence of allelic heterogeneity at the WNT16 locus. One of the skull BMD signals mapping to C7orf58 is mostly driven by children, suggesting temporal determination on peak bone mass acquisition. Our life-course approach postulates that these genetic effects influencing peak bone mass accrual may impact the risk of osteoporosis later in life.

MeSH Terms
Adult Age Factors Alleles Animals Bone Density/genetics,physiology Child Child, Preschool Female Gene Expression Profiling Gene Frequency Genetic Heterogeneity Genome-Wide Association Study Humans Male Mice Osteoporosis/genetics Phenotype Polymorphism, Single Nucleotide Risk Factors Skull/physiology Wnt Proteins/genetics
Chemicals
WNT16 protein, human Wnt Proteins
Authors & Affiliations
28 authors, click to expand affiliations / ORCID
Medina-Gomez Carolina
Department of Internal Medicine, Erasmus University Medical Center, Rotterdam, The Netherlands.
Kemp John P
Estrada Karol
Eriksson Joel
Liu Jeff
Reppe Sjur
Evans David M
Heppe Denise H M
Vandenput Liesbeth
Herrera Lizbeth
Ring Susan M
Kruithof Claudia J
Timpson Nicholas J
Zillikens M Carola
Olstad Ole K
Zheng Hou-Feng
Richards J Brent
St Pourcain Beate
Hofman Albert
Jaddoe Vincent W V
Smith George Davey
Lorentzon Mattias
Gautvik Kaare M
Uitterlinden André G
Brommage Robert
Ohlsson Claes
Tobias Jonathan H
Rivadeneira Fernando
Conflict of Interest

RB and JL are full-time employees of Lexicon Pharmaceuticals. All other authors have declared that no other competing interest exist.

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Article Info
Journal
PLoS genetics
Abbr.
PLoS Genet
ISSN
1553-7404
Published
2012-07-00
Epub
2012-00-05
Pages
e1002718
Language
English
Region
United States
NLM ID
101239074
PMCID
PMC3390371
Subset
IM
Grants
Medical Research Council · G0600705 · United Kingdom
Medical Research Council · G0800582 · United Kingdom
Wellcome Trust · 092731 · United Kingdom
Wellcome Trust · ref: 076467 · United Kingdom
Medical Research Council · MRC G0800582 · United Kingdom
Wellcome Trust · WT083431MA · United Kingdom
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