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An Integration of Genome-Wide Association Study and Gene Expression Profiling to Prioritize the Discovery of Novel Susceptibility Loci for Osteoporosis-Related Traits
Osteoporosis is a complex disorder and commonly leads to fractures in elderly persons. Genome-wide association studies (GWAS) have become an unbiased approach to identify variations in the genome that potentially affect health. However, the genetic variants identified so far only explain a small pro...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2010
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2883588/ https://www.ncbi.nlm.nih.gov/pubmed/20548944 http://dx.doi.org/10.1371/journal.pgen.1000977 |
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author | Hsu, Yi-Hsiang Zillikens, M. Carola Wilson, Scott G. Farber, Charles R. Demissie, Serkalem Soranzo, Nicole Bianchi, Estelle N. Grundberg, Elin Liang, Liming Richards, J. Brent Estrada, Karol Zhou, Yanhua van Nas, Atila Moffatt, Miriam F. Zhai, Guangju Hofman, Albert van Meurs, Joyce B. Pols, Huibert A. P. Price, Roger I. Nilsson, Olle Pastinen, Tomi Cupples, L. Adrienne Lusis, Aldons J. Schadt, Eric E. Ferrari, Serge Uitterlinden, André G. Rivadeneira, Fernando Spector, Timothy D. Karasik, David Kiel, Douglas P. |
author_facet | Hsu, Yi-Hsiang Zillikens, M. Carola Wilson, Scott G. Farber, Charles R. Demissie, Serkalem Soranzo, Nicole Bianchi, Estelle N. Grundberg, Elin Liang, Liming Richards, J. Brent Estrada, Karol Zhou, Yanhua van Nas, Atila Moffatt, Miriam F. Zhai, Guangju Hofman, Albert van Meurs, Joyce B. Pols, Huibert A. P. Price, Roger I. Nilsson, Olle Pastinen, Tomi Cupples, L. Adrienne Lusis, Aldons J. Schadt, Eric E. Ferrari, Serge Uitterlinden, André G. Rivadeneira, Fernando Spector, Timothy D. Karasik, David Kiel, Douglas P. |
author_sort | Hsu, Yi-Hsiang |
collection | PubMed |
description | Osteoporosis is a complex disorder and commonly leads to fractures in elderly persons. Genome-wide association studies (GWAS) have become an unbiased approach to identify variations in the genome that potentially affect health. However, the genetic variants identified so far only explain a small proportion of the heritability for complex traits. Due to the modest genetic effect size and inadequate power, true association signals may not be revealed based on a stringent genome-wide significance threshold. Here, we take advantage of SNP and transcript arrays and integrate GWAS and expression signature profiling relevant to the skeletal system in cellular and animal models to prioritize the discovery of novel candidate genes for osteoporosis-related traits, including bone mineral density (BMD) at the lumbar spine (LS) and femoral neck (FN), as well as geometric indices of the hip (femoral neck-shaft angle, NSA; femoral neck length, NL; and narrow-neck width, NW). A two-stage meta-analysis of GWAS from 7,633 Caucasian women and 3,657 men, revealed three novel loci associated with osteoporosis-related traits, including chromosome 1p13.2 (RAP1A, p = 3.6×10(−8)), 2q11.2 (TBC1D8), and 18q11.2 (OSBPL1A), and confirmed a previously reported region near TNFRSF11B/OPG gene. We also prioritized 16 suggestive genome-wide significant candidate genes based on their potential involvement in skeletal metabolism. Among them, 3 candidate genes were associated with BMD in women. Notably, 2 out of these 3 genes (GPR177, p = 2.6×10(−13); SOX6, p = 6.4×10(−10)) associated with BMD in women have been successfully replicated in a large-scale meta-analysis of BMD, but none of the non-prioritized candidates (associated with BMD) did. Our results support the concept of our prioritization strategy. In the absence of direct biological support for identified genes, we highlighted the efficiency of subsequent functional characterization using publicly available expression profiling relevant to the skeletal system in cellular or whole animal models to prioritize candidate genes for further functional validation. |
format | Text |
id | pubmed-2883588 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2010 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-28835882010-06-14 An Integration of Genome-Wide Association Study and Gene Expression Profiling to Prioritize the Discovery of Novel Susceptibility Loci for Osteoporosis-Related Traits Hsu, Yi-Hsiang Zillikens, M. Carola Wilson, Scott G. Farber, Charles R. Demissie, Serkalem Soranzo, Nicole Bianchi, Estelle N. Grundberg, Elin Liang, Liming Richards, J. Brent Estrada, Karol Zhou, Yanhua van Nas, Atila Moffatt, Miriam F. Zhai, Guangju Hofman, Albert van Meurs, Joyce B. Pols, Huibert A. P. Price, Roger I. Nilsson, Olle Pastinen, Tomi Cupples, L. Adrienne Lusis, Aldons J. Schadt, Eric E. Ferrari, Serge Uitterlinden, André G. Rivadeneira, Fernando Spector, Timothy D. Karasik, David Kiel, Douglas P. PLoS Genet Research Article Osteoporosis is a complex disorder and commonly leads to fractures in elderly persons. Genome-wide association studies (GWAS) have become an unbiased approach to identify variations in the genome that potentially affect health. However, the genetic variants identified so far only explain a small proportion of the heritability for complex traits. Due to the modest genetic effect size and inadequate power, true association signals may not be revealed based on a stringent genome-wide significance threshold. Here, we take advantage of SNP and transcript arrays and integrate GWAS and expression signature profiling relevant to the skeletal system in cellular and animal models to prioritize the discovery of novel candidate genes for osteoporosis-related traits, including bone mineral density (BMD) at the lumbar spine (LS) and femoral neck (FN), as well as geometric indices of the hip (femoral neck-shaft angle, NSA; femoral neck length, NL; and narrow-neck width, NW). A two-stage meta-analysis of GWAS from 7,633 Caucasian women and 3,657 men, revealed three novel loci associated with osteoporosis-related traits, including chromosome 1p13.2 (RAP1A, p = 3.6×10(−8)), 2q11.2 (TBC1D8), and 18q11.2 (OSBPL1A), and confirmed a previously reported region near TNFRSF11B/OPG gene. We also prioritized 16 suggestive genome-wide significant candidate genes based on their potential involvement in skeletal metabolism. Among them, 3 candidate genes were associated with BMD in women. Notably, 2 out of these 3 genes (GPR177, p = 2.6×10(−13); SOX6, p = 6.4×10(−10)) associated with BMD in women have been successfully replicated in a large-scale meta-analysis of BMD, but none of the non-prioritized candidates (associated with BMD) did. Our results support the concept of our prioritization strategy. In the absence of direct biological support for identified genes, we highlighted the efficiency of subsequent functional characterization using publicly available expression profiling relevant to the skeletal system in cellular or whole animal models to prioritize candidate genes for further functional validation. Public Library of Science 2010-06-10 /pmc/articles/PMC2883588/ /pubmed/20548944 http://dx.doi.org/10.1371/journal.pgen.1000977 Text en Hsu et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Hsu, Yi-Hsiang Zillikens, M. Carola Wilson, Scott G. Farber, Charles R. Demissie, Serkalem Soranzo, Nicole Bianchi, Estelle N. Grundberg, Elin Liang, Liming Richards, J. Brent Estrada, Karol Zhou, Yanhua van Nas, Atila Moffatt, Miriam F. Zhai, Guangju Hofman, Albert van Meurs, Joyce B. Pols, Huibert A. P. Price, Roger I. Nilsson, Olle Pastinen, Tomi Cupples, L. Adrienne Lusis, Aldons J. Schadt, Eric E. Ferrari, Serge Uitterlinden, André G. Rivadeneira, Fernando Spector, Timothy D. Karasik, David Kiel, Douglas P. An Integration of Genome-Wide Association Study and Gene Expression Profiling to Prioritize the Discovery of Novel Susceptibility Loci for Osteoporosis-Related Traits |
title | An Integration of Genome-Wide Association Study and Gene Expression Profiling to Prioritize the Discovery of Novel Susceptibility Loci for Osteoporosis-Related Traits |
title_full | An Integration of Genome-Wide Association Study and Gene Expression Profiling to Prioritize the Discovery of Novel Susceptibility Loci for Osteoporosis-Related Traits |
title_fullStr | An Integration of Genome-Wide Association Study and Gene Expression Profiling to Prioritize the Discovery of Novel Susceptibility Loci for Osteoporosis-Related Traits |
title_full_unstemmed | An Integration of Genome-Wide Association Study and Gene Expression Profiling to Prioritize the Discovery of Novel Susceptibility Loci for Osteoporosis-Related Traits |
title_short | An Integration of Genome-Wide Association Study and Gene Expression Profiling to Prioritize the Discovery of Novel Susceptibility Loci for Osteoporosis-Related Traits |
title_sort | integration of genome-wide association study and gene expression profiling to prioritize the discovery of novel susceptibility loci for osteoporosis-related traits |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2883588/ https://www.ncbi.nlm.nih.gov/pubmed/20548944 http://dx.doi.org/10.1371/journal.pgen.1000977 |
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