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Association between a variation in the phosphodiesterase 4D gene and bone mineral density

BACKGROUND: Fragility fractures caused by osteoporosis are a major cause of morbidity and mortality in aging populations. Bone mineral density (BMD) is a useful surrogate marker for risk of fracture and is a highly heritable trait. The genetic variants underlying this genetic contribution are largel...

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Autores principales: Reneland, Richard H, Mah, Steven, Kammerer, Stefan, Hoyal, Carolyn R, Marnellos, George, Wilson, Scott G, Sambrook, Philip N, Spector, Tim D, Nelson, Matthew R, Braun, Andreas
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC554993/
https://www.ncbi.nlm.nih.gov/pubmed/15752431
http://dx.doi.org/10.1186/1471-2350-6-9
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author Reneland, Richard H
Mah, Steven
Kammerer, Stefan
Hoyal, Carolyn R
Marnellos, George
Wilson, Scott G
Sambrook, Philip N
Spector, Tim D
Nelson, Matthew R
Braun, Andreas
author_facet Reneland, Richard H
Mah, Steven
Kammerer, Stefan
Hoyal, Carolyn R
Marnellos, George
Wilson, Scott G
Sambrook, Philip N
Spector, Tim D
Nelson, Matthew R
Braun, Andreas
author_sort Reneland, Richard H
collection PubMed
description BACKGROUND: Fragility fractures caused by osteoporosis are a major cause of morbidity and mortality in aging populations. Bone mineral density (BMD) is a useful surrogate marker for risk of fracture and is a highly heritable trait. The genetic variants underlying this genetic contribution are largely unknown. METHODS: We performed a large-scale association study investigating more than 25,000 single nucleotide polymorphisms (SNPs) located within 16,000 genes. Allele frequencies were estimated in contrasting DNA pools from white females selected for low (<0.87 g/cm(2), n = 319) and high (> 1.11 g/cm(2), n = 321) BMD at the lumbar spine. Significant findings were verified in two additional sample collections. RESULTS: Based on allele frequency differences between DNA pools and subsequent individual genotyping, one of the candidate loci indicated was the phosphodiesterase 4D (PDE4D) gene region on chromosome 5q12. We subsequently tested the marker SNP, rs1498608, in a second sample of 138 white females with low (<0.91 g/cm(2)) and 138 females with high (>1.04 g/cm(2)) lumbar spine BMD. Odds ratios were 1.5 (P = 0.035) in the original sample and 2.1 (P = 0.018) in the replication sample. Association fine mapping with 80 SNPs located within 50 kilobases of the marker SNP identified a 20 kilobase region of association containing exon 6 of PDE4D. In a second, family-based replication sample with a preponderance of females with low BMD, rs1498608 showed an opposite relationship with BMD at different sites (p = 0.00044-0.09). We also replicated the previously reported association of the Ser37Ala polymorphism in BMP2, known to interact biologically with PDE4D, with BMD. CONCLUSION: This study indicates that variants in the gene encoding PDE4D account for some of the genetic contribution to bone mineral density variation in humans. The contrasting results from different samples indicate that the effect may be context-dependent. PDE4 inhibitors have been shown to increase bone mass in normal and osteopenic mice, but up until now there have been no reports implicating any member of the PDE4 gene family in human osteoporosis.
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spelling pubmed-5549932005-03-20 Association between a variation in the phosphodiesterase 4D gene and bone mineral density Reneland, Richard H Mah, Steven Kammerer, Stefan Hoyal, Carolyn R Marnellos, George Wilson, Scott G Sambrook, Philip N Spector, Tim D Nelson, Matthew R Braun, Andreas BMC Med Genet Research Article BACKGROUND: Fragility fractures caused by osteoporosis are a major cause of morbidity and mortality in aging populations. Bone mineral density (BMD) is a useful surrogate marker for risk of fracture and is a highly heritable trait. The genetic variants underlying this genetic contribution are largely unknown. METHODS: We performed a large-scale association study investigating more than 25,000 single nucleotide polymorphisms (SNPs) located within 16,000 genes. Allele frequencies were estimated in contrasting DNA pools from white females selected for low (<0.87 g/cm(2), n = 319) and high (> 1.11 g/cm(2), n = 321) BMD at the lumbar spine. Significant findings were verified in two additional sample collections. RESULTS: Based on allele frequency differences between DNA pools and subsequent individual genotyping, one of the candidate loci indicated was the phosphodiesterase 4D (PDE4D) gene region on chromosome 5q12. We subsequently tested the marker SNP, rs1498608, in a second sample of 138 white females with low (<0.91 g/cm(2)) and 138 females with high (>1.04 g/cm(2)) lumbar spine BMD. Odds ratios were 1.5 (P = 0.035) in the original sample and 2.1 (P = 0.018) in the replication sample. Association fine mapping with 80 SNPs located within 50 kilobases of the marker SNP identified a 20 kilobase region of association containing exon 6 of PDE4D. In a second, family-based replication sample with a preponderance of females with low BMD, rs1498608 showed an opposite relationship with BMD at different sites (p = 0.00044-0.09). We also replicated the previously reported association of the Ser37Ala polymorphism in BMP2, known to interact biologically with PDE4D, with BMD. CONCLUSION: This study indicates that variants in the gene encoding PDE4D account for some of the genetic contribution to bone mineral density variation in humans. The contrasting results from different samples indicate that the effect may be context-dependent. PDE4 inhibitors have been shown to increase bone mass in normal and osteopenic mice, but up until now there have been no reports implicating any member of the PDE4 gene family in human osteoporosis. BioMed Central 2005-03-07 /pmc/articles/PMC554993/ /pubmed/15752431 http://dx.doi.org/10.1186/1471-2350-6-9 Text en Copyright © 2005 Reneland et al; licensee BioMed Central Ltd.
spellingShingle Research Article
Reneland, Richard H
Mah, Steven
Kammerer, Stefan
Hoyal, Carolyn R
Marnellos, George
Wilson, Scott G
Sambrook, Philip N
Spector, Tim D
Nelson, Matthew R
Braun, Andreas
Association between a variation in the phosphodiesterase 4D gene and bone mineral density
title Association between a variation in the phosphodiesterase 4D gene and bone mineral density
title_full Association between a variation in the phosphodiesterase 4D gene and bone mineral density
title_fullStr Association between a variation in the phosphodiesterase 4D gene and bone mineral density
title_full_unstemmed Association between a variation in the phosphodiesterase 4D gene and bone mineral density
title_short Association between a variation in the phosphodiesterase 4D gene and bone mineral density
title_sort association between a variation in the phosphodiesterase 4d gene and bone mineral density
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC554993/
https://www.ncbi.nlm.nih.gov/pubmed/15752431
http://dx.doi.org/10.1186/1471-2350-6-9
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