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Large-scale analysis of association between polymorphisms in the transforming growth factor beta 1 gene (TGFB1) and osteoporosis: the GENOMOS study

Large-scale analysis of association between polymorphisms in the transforming growth factor beta 1 gene (TGFB1) and osteoporosis: the GENOMOS study
Large-scale analysis of association between polymorphisms in the transforming growth factor beta 1 gene (TGFB1) and osteoporosis: the GENOMOS study
INTRODUCTION: The TGFB1 gene which encodes transforming growth factor beta 1, is a strong candidate for susceptibility to osteoporosis and several studies have reported associations between bone mineral density (BMD), osteoporotic fractures and polymorphisms of TGFB1, although these studies have yielded conflicting results. METHODS: We investigated associations between TGFB1 polymorphisms and BMD and fracture in the GENOMOS study: a prospective multicenter study involving 10 European research studies including a total of 28,924 participants. Genotyping was conducted for known TGFB1 polymorphisms at the following sites: G-1639-A (G-800-A, rs1800468), C-1348-T (C-509-T, rs1800469), T29-C (Leu10Pro, rs1982073), G74-C (Arg25Pro, rs1800471) and C788-T (Thr263Ile, rs1800472). These polymorphisms were genotyped prospectively and methodology was standardized across research centers. Genotypes and haplotypes were related to BMD at the lumbar sine and femoral neck and fractures. RESULTS: There were no significant differences in either women or men at either skeletal site for any of the examined polymorphisms with the possible exception of a weak association with reduced BMD (-12 mg/cm2) in men with the T-1348 allele (p<0.05). None of the haplotypes was associated with BMD and none of the polymorphisms or haplotypes significantly affected overall risk of fractures, however, the odds ratio for incident vertebral fracture in carriers of the rare T788 allele was 1.64 (95% CI: 1.09-2.64), p<0.05. CONCLUSIONS: This study indicates that polymorphic variation in the TGFB1 gene does not play a major role in regulating BMD or susceptibility to fractures. The weak associations we observed between the C-1348-T and lumbar spine BMD in men and between C788-T and risk of incident vertebral fractures are of interest but could be chance findings and will need replication in future studies
men, gene, genotype, analysis, bone, haplotypes, odds ratio, osteoporosis, women, growth, neck, vertebral fracture, research, methods, risk, fractures, spine
8756-3282
969-981
Langdahl, B.L.
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Uitterlinden, A.G.
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Ralston, S.H.
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Trikalinos, T.A.
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Balcells, S.
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Brandi, M.L.
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Scollen, S.
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Lips, P.
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Lorenc, R.
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Obermayer-Pietsch, B.
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Reid, D.M.
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Armas, J.B.
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Bassiti, A.
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Bustamante, M.
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Husted, L.B.
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Carey, A.H.
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Perez Cano, R.
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Dobnig, H.
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Dunning, A.M.
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Fahrleitner-Pammer, A.
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Falchetti, A.
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Karczmarewicz, E.
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Kruk, M.
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Van Leeuwen, J.P.
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Masi, L.
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Van Meurs, J.B.
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Mangion, J.
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McGuigan, F.E.
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Mellibovsky, L.
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Mosekilde, L.
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Nogues, X.
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Pols, H.A.
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Reeve, J.
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Renner, W.
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Rivadeneira, F.
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Van Schoor, N.M.
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Ioannidis, J.P.
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Langdahl, B.L.
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Uitterlinden, A.G.
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Ralston, S.H.
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Trikalinos, T.A.
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Balcells, S.
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Brandi, M.L.
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Scollen, S.
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Lips, P.
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Lorenc, R.
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Obermayer-Pietsch, B.
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Reid, D.M.
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Armas, J.B.
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Bassiti, A.
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Bustamante, M.
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Perez Cano, R.
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Dobnig, H.
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Dunning, A.M.
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Fahrleitner-Pammer, A.
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Falchetti, A.
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Karczmarewicz, E.
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Kruk, M.
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Van Leeuwen, J.P.
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Masi, L.
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Van Meurs, J.B.
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Mangion, J.
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McGuigan, F.E.
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Mellibovsky, L.
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Mosekilde, L.
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Nogues, X.
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Pols, H.A.
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Reeve, J.
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Renner, W.
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Rivadeneira, F.
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Van Schoor, N.M.
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Ioannidis, J.P.
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Langdahl, B.L., Uitterlinden, A.G., Ralston, S.H., Trikalinos, T.A., Balcells, S., Brandi, M.L., Scollen, S., Lips, P., Lorenc, R., Obermayer-Pietsch, B., Reid, D.M., Armas, J.B., Arp, P.P., Bassiti, A., Bustamante, M., Husted, L.B., Carey, A.H., Perez Cano, R., Dobnig, H., Dunning, A.M., Fahrleitner-Pammer, A., Falchetti, A., Karczmarewicz, E., Kruk, M., Van Leeuwen, J.P., Masi, L., Van Meurs, J.B., Mangion, J., McGuigan, F.E., Mellibovsky, L., Mosekilde, L., Nogues, X., Pols, H.A., Reeve, J., Renner, W., Rivadeneira, F., Van Schoor, N.M. and Ioannidis, J.P. (2008) Large-scale analysis of association between polymorphisms in the transforming growth factor beta 1 gene (TGFB1) and osteoporosis: the GENOMOS study. Bone, 42 (5), 969-981.

Record type: Article

Abstract

INTRODUCTION: The TGFB1 gene which encodes transforming growth factor beta 1, is a strong candidate for susceptibility to osteoporosis and several studies have reported associations between bone mineral density (BMD), osteoporotic fractures and polymorphisms of TGFB1, although these studies have yielded conflicting results. METHODS: We investigated associations between TGFB1 polymorphisms and BMD and fracture in the GENOMOS study: a prospective multicenter study involving 10 European research studies including a total of 28,924 participants. Genotyping was conducted for known TGFB1 polymorphisms at the following sites: G-1639-A (G-800-A, rs1800468), C-1348-T (C-509-T, rs1800469), T29-C (Leu10Pro, rs1982073), G74-C (Arg25Pro, rs1800471) and C788-T (Thr263Ile, rs1800472). These polymorphisms were genotyped prospectively and methodology was standardized across research centers. Genotypes and haplotypes were related to BMD at the lumbar sine and femoral neck and fractures. RESULTS: There were no significant differences in either women or men at either skeletal site for any of the examined polymorphisms with the possible exception of a weak association with reduced BMD (-12 mg/cm2) in men with the T-1348 allele (p<0.05). None of the haplotypes was associated with BMD and none of the polymorphisms or haplotypes significantly affected overall risk of fractures, however, the odds ratio for incident vertebral fracture in carriers of the rare T788 allele was 1.64 (95% CI: 1.09-2.64), p<0.05. CONCLUSIONS: This study indicates that polymorphic variation in the TGFB1 gene does not play a major role in regulating BMD or susceptibility to fractures. The weak associations we observed between the C-1348-T and lumbar spine BMD in men and between C788-T and risk of incident vertebral fractures are of interest but could be chance findings and will need replication in future studies

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More information

Published date: 2008
Keywords: men, gene, genotype, analysis, bone, haplotypes, odds ratio, osteoporosis, women, growth, neck, vertebral fracture, research, methods, risk, fractures, spine

Identifiers

Local EPrints ID: 61315
URI: http://eprints.soton.ac.uk/id/eprint/61315
ISSN: 8756-3282
PURE UUID: b59ea05a-7d3f-4275-b998-f0d58ab4162b

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Date deposited: 05 Sep 2008
Last modified: 08 Jan 2022 10:07

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Contributors

Author: B.L. Langdahl
Author: A.G. Uitterlinden
Author: S.H. Ralston
Author: T.A. Trikalinos
Author: S. Balcells
Author: M.L. Brandi
Author: S. Scollen
Author: P. Lips
Author: R. Lorenc
Author: B. Obermayer-Pietsch
Author: D.M. Reid
Author: J.B. Armas
Author: P.P. Arp
Author: A. Bassiti
Author: M. Bustamante
Author: L.B. Husted
Author: A.H. Carey
Author: R. Perez Cano
Author: H. Dobnig
Author: A.M. Dunning
Author: A. Fahrleitner-Pammer
Author: A. Falchetti
Author: E. Karczmarewicz
Author: M. Kruk
Author: J.P. Van Leeuwen
Author: L. Masi
Author: J.B. Van Meurs
Author: J. Mangion
Author: F.E. McGuigan
Author: L. Mellibovsky
Author: L. Mosekilde
Author: X. Nogues
Author: H.A. Pols
Author: J. Reeve
Author: W. Renner
Author: F. Rivadeneira
Author: N.M. Van Schoor
Author: J.P. Ioannidis

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