» Articles » PMID: 21533022

Genome-wide Association Study Using Extreme Truncate Selection Identifies Novel Genes Affecting Bone Mineral Density and Fracture Risk

Abstract

Osteoporotic fracture is a major cause of morbidity and mortality worldwide. Low bone mineral density (BMD) is a major predisposing factor to fracture and is known to be highly heritable. Site-, gender-, and age-specific genetic effects on BMD are thought to be significant, but have largely not been considered in the design of genome-wide association studies (GWAS) of BMD to date. We report here a GWAS using a novel study design focusing on women of a specific age (postmenopausal women, age 55-85 years), with either extreme high or low hip BMD (age- and gender-adjusted BMD z-scores of +1.5 to +4.0, n = 1055, or -4.0 to -1.5, n = 900), with replication in cohorts of women drawn from the general population (n = 20,898). The study replicates 21 of 26 known BMD-associated genes. Additionally, we report suggestive association of a further six new genetic associations in or around the genes CLCN7, GALNT3, IBSP, LTBP3, RSPO3, and SOX4, with replication in two independent datasets. A novel mouse model with a loss-of-function mutation in GALNT3 is also reported, which has high bone mass, supporting the involvement of this gene in BMD determination. In addition to identifying further genes associated with BMD, this study confirms the efficiency of extreme-truncate selection designs for quantitative trait association studies.

Citing Articles

Identifying rare variants in genes related to bone phenotypes in a cohort of postmenopausal women.

Patino-Salazar J, Ovejero D, Gabernet M, Martinez-Gil N, Alcaide-Consuegra E, Mellibovsky L Osteoporos Int. 2025; .

PMID: 39915337 DOI: 10.1007/s00198-025-07413-4.


Exogenous bone sialoprotein improves extraction socket healing in Ibsp knockout and wild-type mice.

Chavez M, Andras N, Tan M, Kolli T, Chu E, Goldberg H Bone. 2024; 192:117381.

PMID: 39722365 PMC: 11761379. DOI: 10.1016/j.bone.2024.117381.


The role of bone sialoprotein in bone healing.

Foster B J Struct Biol. 2024; 216(4):108132.

PMID: 39369971 PMC: 11645215. DOI: 10.1016/j.jsb.2024.108132.


Extensive identification of genes involved in congenital and structural heart disorders and cardiomyopathy.

Spielmann N, Miller G, Oprea T, Hsu C, Fobo G, Frishman G Nat Cardiovasc Res. 2024; 1(2):157-173.

PMID: 39195995 PMC: 11358025. DOI: 10.1038/s44161-022-00018-8.


Shared genetic effect of kidney function on bipolar and major depressive disorders: a large-scale genome-wide cross-trait analysis.

Yu S, Lin Y, Yang Y, Jin X, Liao B, Lu D Hum Genomics. 2024; 18(1):60.

PMID: 38858783 PMC: 11165782. DOI: 10.1186/s40246-024-00627-3.


References
1.
Trost Z, Trebse R, Prezelj J, Komadina R, Logar D, Marc J . A microarray based identification of osteoporosis-related genes in primary culture of human osteoblasts. Bone. 2009; 46(1):72-80. DOI: 10.1016/j.bone.2009.09.015. View

2.
Styrkarsdottir U, Halldorsson B, Gretarsdottir S, Gudbjartsson D, Walters G, Ingvarsson T . New sequence variants associated with bone mineral density. Nat Genet. 2008; 41(1):15-7. DOI: 10.1038/ng.284. View

3.
Duncan E, Cardon L, Sinsheimer J, Wass J, Brown M . Site and gender specificity of inheritance of bone mineral density. J Bone Miner Res. 2003; 18(8):1531-8. DOI: 10.1359/jbmr.2003.18.8.1531. View

4.
Harris M, Nguyen T, HOWARD G, Kelly P, Eisman J . Genetic and environmental correlations between bone formation and bone mineral density: a twin study. Bone. 1998; 22(2):141-5. DOI: 10.1016/s8756-3282(97)00252-4. View

5.
Aoki M, Mieda M, Ikeda T, Hamada Y, Nakamura H, Okamoto H . R-spondin3 is required for mouse placental development. Dev Biol. 2006; 301(1):218-26. DOI: 10.1016/j.ydbio.2006.08.018. View