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Bicc1 is a genetic determinant of osteoblastogenesis and bone mineral density

Authors :
Mesner, Larry D.
Ray, Brianne
Hsu, Yi-Hsiang
Manichaikul, Ani
Lum, Eric
Bryda, Elizabeth C.
Rich, Stephen S.
Rosen, Clifford J.
Criqui, Michael H.
Allison, Matthew
Budoff, Matthew J.
Clemens, Thomas L.
Farber, Charles R.
Source :
Journal of Clinical Investigation. June 1, 2014, Vol. 124 Issue 6, p2736, 14 p.
Publication Year :
2014

Abstract

Patient bone mineral density (BMD) predicts the likelihood of osteoporotic fracture. While substantial progress has been made toward elucidating the genetic determinants of BMD, our understanding of the factors involved remains incomplete. Here, using a systems genetics approach in the mouse, we predicted that bicaudal C homolog 1 (Bicc1), which encodes an RNA-binding protein, is responsible for a BMD quantitative trait locus (QTL) located on murine chromosome 10. Consistent with this prediction, mice heterozygous for a null allele of Bicc1 had low BMD. We used a coexpression network-based approach to determine how Bicc1 influences BMD. Based on this analysis, we inferred that Bicc1 was involved in osteoblast differentiation and that polycystic kidney disease 2 (Pkd2) was a downstream target of Bicc1. Knock down of Bicc1 and Pkd2 impaired osteoblastogenesis, and Bicc1 deficiency-dependent osteoblast defects were rescued by Pkd2 overexpression. Last, in 2 human BMD genome-wide association (GWAS) meta-analyses, we identified SNPs in BICC1 and PKD2 that were associated with BMD. These results, in both mice and humans, identify Bicc1 as a genetic determinant of osteoblastogenesis and BMD and suggest that it does so by regulating Pkd2 transcript levels.<br />Introduction Osteoporosis is a disease characterized by low bone mass, skeletal fragility, and increased risk of fracture (1). Of the traits intrinsic to bone that influence its strength, bone mineral [...]

Details

Language :
English
ISSN :
00219738
Volume :
124
Issue :
6
Database :
Gale General OneFile
Journal :
Journal of Clinical Investigation
Publication Type :
Academic Journal
Accession number :
edsgcl.372250856
Full Text :
https://doi.org/10.1172/JCI73072