Cargando…

Bone mineral density, osteoporosis, and osteoporotic fractures: a genome-wide association study

BACKGROUND: Osteoporosis is diagnosed by the measurement of bone mineral density, which is a highly heritable and multifactorial trait. We aimed to identify genetic loci that are associated with bone mineral density. METHODS: In this genome-wide association study, we identified the most promising of...

Descripción completa

Detalles Bibliográficos
Autores principales: Richards, JB, Rivadeneira, F, Inouye, M, Pastinen, TM, Soranzo, N, Wilson, SG, Andrew, T, Falchi, M, Gwilliam, R, Ahmadi, KR, Valdes, AM, Arp, P, Whittaker, P, Verlaan, DJ, Jhamai, M, Kumanduri, V, Moorhouse, M, van Meurs, JB, Hofman, A, Pols, HAP, Hart, D, Zhai, G, Kato, BS, Mullin, BH, Zhang, F, Deloukas, P, Uitterlinden, AG, Spector, TD
Formato: Texto
Lenguaje:English
Publicado: Lancet Publishing Group 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2679414/
https://www.ncbi.nlm.nih.gov/pubmed/18455228
http://dx.doi.org/10.1016/S0140-6736(08)60599-1
_version_ 1782166894535507968
author Richards, JB
Rivadeneira, F
Inouye, M
Pastinen, TM
Soranzo, N
Wilson, SG
Andrew, T
Falchi, M
Gwilliam, R
Ahmadi, KR
Valdes, AM
Arp, P
Whittaker, P
Verlaan, DJ
Jhamai, M
Kumanduri, V
Moorhouse, M
van Meurs, JB
Hofman, A
Pols, HAP
Hart, D
Zhai, G
Kato, BS
Mullin, BH
Zhang, F
Deloukas, P
Uitterlinden, AG
Spector, TD
author_facet Richards, JB
Rivadeneira, F
Inouye, M
Pastinen, TM
Soranzo, N
Wilson, SG
Andrew, T
Falchi, M
Gwilliam, R
Ahmadi, KR
Valdes, AM
Arp, P
Whittaker, P
Verlaan, DJ
Jhamai, M
Kumanduri, V
Moorhouse, M
van Meurs, JB
Hofman, A
Pols, HAP
Hart, D
Zhai, G
Kato, BS
Mullin, BH
Zhang, F
Deloukas, P
Uitterlinden, AG
Spector, TD
author_sort Richards, JB
collection PubMed
description BACKGROUND: Osteoporosis is diagnosed by the measurement of bone mineral density, which is a highly heritable and multifactorial trait. We aimed to identify genetic loci that are associated with bone mineral density. METHODS: In this genome-wide association study, we identified the most promising of 314 075 single nucleotide polymorphisms (SNPs) in 2094 women in a UK study. We then tested these SNPs for replication in 6463 people from three other cohorts in western Europe. We also investigated allelic expression in lymphoblast cell lines. We tested the association between the replicated SNPs and osteoporotic fractures with data from two studies. FINDINGS: We identified genome-wide evidence for an association between bone mineral density and two SNPs (p<5×10(−8)). The SNPs were rs4355801, on chromosome 8, near to the TNFRSF11B (osteoprotegerin) gene, and rs3736228, on chromosome 11 in the LRP5 (lipoprotein-receptor-related protein) gene. A non-synonymous SNP in the LRP5 gene was associated with decreased bone mineral density (rs3736228, p=6·3×10(−12) for lumbar spine and p=1·9×10(−4) for femoral neck) and an increased risk of both osteoporotic fractures (odds ratio [OR] 1·3, 95% CI 1·09–1·52, p=0·002) and osteoporosis (OR 1·3, 1·08–1·63, p=0·008). Three SNPs near the TNFRSF11B gene were associated with decreased bone mineral density (top SNP, rs4355801: p=7·6×10(−10) for lumbar spine and p=3·3×10(−8) for femoral neck) and increased risk of osteoporosis (OR 1·2, 95% CI 1·01–1·42, p=0·038). For carriers of the risk allele at rs4355801, expression of TNFRSF11B in lymphoblast cell lines was halved (p=3·0×10(−6)). 1883 (22%) of 8557 people were at least heterozygous for these risk alleles, and these alleles had a cumulative association with bone mineral density (trend p=2·3×10(−17)). The presence of both risk alleles increased the risk of osteoporotic fractures (OR 1·3, 1·08–1·63, p=0·006) and this effect was independent of bone mineral density. INTERPRETATION: Two gene variants of key biological proteins increase the risk of osteoporosis and osteoporotic fracture. The combined effect of these risk alleles on fractures is similar to that of most well-replicated environmental risk factors, and they are present in more than one in five white people, suggesting a potential role in screening. FUNDING: Wellcome Trust, European Commission, NWO Investments, Arthritis Research Campaign, Chronic Disease Research Foundation, Canadian Institutes of Health Research, European Society for Clinical and Economic Aspects of Osteoporosis, Genome Canada, Genome Quebéc, Canada Research Chairs, National Health and Medical Research Council of Australia, and European Union.
format Text
id pubmed-2679414
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher Lancet Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-26794142009-05-08 Bone mineral density, osteoporosis, and osteoporotic fractures: a genome-wide association study Richards, JB Rivadeneira, F Inouye, M Pastinen, TM Soranzo, N Wilson, SG Andrew, T Falchi, M Gwilliam, R Ahmadi, KR Valdes, AM Arp, P Whittaker, P Verlaan, DJ Jhamai, M Kumanduri, V Moorhouse, M van Meurs, JB Hofman, A Pols, HAP Hart, D Zhai, G Kato, BS Mullin, BH Zhang, F Deloukas, P Uitterlinden, AG Spector, TD Lancet Fast track — Articles BACKGROUND: Osteoporosis is diagnosed by the measurement of bone mineral density, which is a highly heritable and multifactorial trait. We aimed to identify genetic loci that are associated with bone mineral density. METHODS: In this genome-wide association study, we identified the most promising of 314 075 single nucleotide polymorphisms (SNPs) in 2094 women in a UK study. We then tested these SNPs for replication in 6463 people from three other cohorts in western Europe. We also investigated allelic expression in lymphoblast cell lines. We tested the association between the replicated SNPs and osteoporotic fractures with data from two studies. FINDINGS: We identified genome-wide evidence for an association between bone mineral density and two SNPs (p<5×10(−8)). The SNPs were rs4355801, on chromosome 8, near to the TNFRSF11B (osteoprotegerin) gene, and rs3736228, on chromosome 11 in the LRP5 (lipoprotein-receptor-related protein) gene. A non-synonymous SNP in the LRP5 gene was associated with decreased bone mineral density (rs3736228, p=6·3×10(−12) for lumbar spine and p=1·9×10(−4) for femoral neck) and an increased risk of both osteoporotic fractures (odds ratio [OR] 1·3, 95% CI 1·09–1·52, p=0·002) and osteoporosis (OR 1·3, 1·08–1·63, p=0·008). Three SNPs near the TNFRSF11B gene were associated with decreased bone mineral density (top SNP, rs4355801: p=7·6×10(−10) for lumbar spine and p=3·3×10(−8) for femoral neck) and increased risk of osteoporosis (OR 1·2, 95% CI 1·01–1·42, p=0·038). For carriers of the risk allele at rs4355801, expression of TNFRSF11B in lymphoblast cell lines was halved (p=3·0×10(−6)). 1883 (22%) of 8557 people were at least heterozygous for these risk alleles, and these alleles had a cumulative association with bone mineral density (trend p=2·3×10(−17)). The presence of both risk alleles increased the risk of osteoporotic fractures (OR 1·3, 1·08–1·63, p=0·006) and this effect was independent of bone mineral density. INTERPRETATION: Two gene variants of key biological proteins increase the risk of osteoporosis and osteoporotic fracture. The combined effect of these risk alleles on fractures is similar to that of most well-replicated environmental risk factors, and they are present in more than one in five white people, suggesting a potential role in screening. FUNDING: Wellcome Trust, European Commission, NWO Investments, Arthritis Research Campaign, Chronic Disease Research Foundation, Canadian Institutes of Health Research, European Society for Clinical and Economic Aspects of Osteoporosis, Genome Canada, Genome Quebéc, Canada Research Chairs, National Health and Medical Research Council of Australia, and European Union. Lancet Publishing Group 2008-05-03 /pmc/articles/PMC2679414/ /pubmed/18455228 http://dx.doi.org/10.1016/S0140-6736(08)60599-1 Text en © 2008 Elsevier Ltd. All rights reserved. This document may be redistributed and reused, subject to certain conditions (http://www.elsevier.com/wps/find/authorsview.authors/supplementalterms1.0) .
spellingShingle Fast track — Articles
Richards, JB
Rivadeneira, F
Inouye, M
Pastinen, TM
Soranzo, N
Wilson, SG
Andrew, T
Falchi, M
Gwilliam, R
Ahmadi, KR
Valdes, AM
Arp, P
Whittaker, P
Verlaan, DJ
Jhamai, M
Kumanduri, V
Moorhouse, M
van Meurs, JB
Hofman, A
Pols, HAP
Hart, D
Zhai, G
Kato, BS
Mullin, BH
Zhang, F
Deloukas, P
Uitterlinden, AG
Spector, TD
Bone mineral density, osteoporosis, and osteoporotic fractures: a genome-wide association study
title Bone mineral density, osteoporosis, and osteoporotic fractures: a genome-wide association study
title_full Bone mineral density, osteoporosis, and osteoporotic fractures: a genome-wide association study
title_fullStr Bone mineral density, osteoporosis, and osteoporotic fractures: a genome-wide association study
title_full_unstemmed Bone mineral density, osteoporosis, and osteoporotic fractures: a genome-wide association study
title_short Bone mineral density, osteoporosis, and osteoporotic fractures: a genome-wide association study
title_sort bone mineral density, osteoporosis, and osteoporotic fractures: a genome-wide association study
topic Fast track — Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2679414/
https://www.ncbi.nlm.nih.gov/pubmed/18455228
http://dx.doi.org/10.1016/S0140-6736(08)60599-1
work_keys_str_mv AT richardsjb bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT rivadeneiraf bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT inouyem bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT pastinentm bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT soranzon bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT wilsonsg bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT andrewt bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT falchim bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT gwilliamr bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT ahmadikr bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT valdesam bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT arpp bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT whittakerp bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT verlaandj bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT jhamaim bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT kumanduriv bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT moorhousem bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT vanmeursjb bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT hofmana bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT polshap bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT hartd bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT zhaig bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT katobs bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT mullinbh bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT zhangf bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT deloukasp bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT uitterlindenag bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy
AT spectortd bonemineraldensityosteoporosisandosteoporoticfracturesagenomewideassociationstudy