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Deletion of BMP Receptor Type IB Decreased Bone Mass in Association with Compromised Osteoblastic Differentiation of Bone Marrow Mesenchymal Progenitors

Overview
Journal Sci Rep
Specialty Science
Date 2016 Apr 7
PMID 27048979
Citations 24
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Abstract

We previously found that disruption of two type I BMP receptors, Bmpr1a and Acvr1, respectively, in an osteoblast-specific manner, increased bone mass in mice. BMPR1B, another BMP type I receptor, is also capable of binding to BMP ligands and transduce BMP signaling. However, little is known about the function of BMPR1B in bone. In this study, we investigated the bone phenotype in Bmpr1b null mice and the impacts of loss of Bmpr1b on osteoblasts and osteoclasts. We found that deletion of Bmpr1b resulted in osteopenia in 8-week-old male mice, and the phenotype was transient and gender specific. The decreased bone mass was neither due to the changes in osteoblastic bone formation activity nor osteoclastic bone resorption activity in vivo. In vitro differentiation of Bmpr1b null osteoclasts was increased but resorption activity was decreased. Calvarial pre-osteoblasts from Bmpr1b mutant showed comparable differentiation capability in vitro, while they showed increased BMP-SMAD signaling in culture. Different from calvarial pre-osteoblasts, Bmpr1b mutant bone marrow mesenchymal progenitors showed compromised differentiation in vitro, which may be a reason for the osteopenic phenotype in the mutant mice. In conclusion, our results suggested that BMPR1B plays distinct roles from BMPR1A and ACVR1 in maintaining bone mass and transducing BMP signaling.

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References
1.
Urist M . Bone: formation by autoinduction. Science. 1965; 150(3698):893-9. DOI: 10.1126/science.150.3698.893. View

2.
Mishina Y, Starbuck M, Gentile M, Fukuda T, Kasparcova V, Seedor J . Bone morphogenetic protein type IA receptor signaling regulates postnatal osteoblast function and bone remodeling. J Biol Chem. 2004; 279(26):27560-6. DOI: 10.1074/jbc.M404222200. View

3.
Dewulf N, Verschueren K, Lonnoy O, Moren A, Grimsby S, Vande Spiegle K . Distinct spatial and temporal expression patterns of two type I receptors for bone morphogenetic proteins during mouse embryogenesis. Endocrinology. 1995; 136(6):2652-63. DOI: 10.1210/endo.136.6.7750489. View

4.
Mishina Y, Suzuki A, Ueno N, Behringer R . Bmpr encodes a type I bone morphogenetic protein receptor that is essential for gastrulation during mouse embryogenesis. Genes Dev. 1995; 9(24):3027-37. DOI: 10.1101/gad.9.24.3027. View

5.
Zou H, Wieser R, Massague J, Niswander L . Distinct roles of type I bone morphogenetic protein receptors in the formation and differentiation of cartilage. Genes Dev. 1997; 11(17):2191-203. PMC: 275391. DOI: 10.1101/gad.11.17.2191. View