Osteocyte Wnt/β-Catenin Signaling Is Required for Normal Bone Homeostasis

Author:

Kramer Ina1,Halleux Christine1,Keller Hansjoerg1,Pegurri Marco1,Gooi Jonathan H.1,Weber Patricia Brander2,Feng Jian Q.3,Bonewald Lynda F.4,Kneissel Michaela1

Affiliation:

1. Musculoskeletal Disease Area

2. Pathology, Novartis Institutes for BioMedical Research, Novartis Pharma AG, CH-4002 Basel, Switzerland

3. Department of Biomedical Sciences, Baylor College of Dentistry, Dallas, Texas

4. Department of Oral Biology, University of Missouri at Kansas City, Kansas City, Missouri

Abstract

ABSTRACT β-Catenin-dependent canonical Wnt signaling plays an important role in bone metabolism by controlling differentiation of bone-forming osteoblasts and bone-resorbing osteoclasts. To investigate its function in osteocytes, the cell type constituting the majority of bone cells, we generated osteocyte-specific β- catenin -deficient mice ( Ctnnb1 loxP/loxP ; Dmp1-Cre ). Homozygous mutants were born at normal Mendelian frequency with no obvious morphological abnormalities or detectable differences in size or body weight, but bone mass accrual was strongly impaired due to early-onset, progressive bone loss in the appendicular and axial skeleton with mild growth retardation and premature lethality. Cancellous bone mass was almost completely absent, and cortical bone thickness was dramatically reduced. The low-bone-mass phenotype was associated with increased osteoclast number and activity, whereas osteoblast function and osteocyte density were normal. Cortical bone Wnt/β-catenin target gene expression was reduced, and of the known regulators of osteoclast differentiation, osteoprotegerin ( OPG ) expression was significantly downregulated in osteocyte bone fractions of mutant mice. Moreover, the OPG levels expressed by osteocytes were higher than or comparable to the levels expressed by osteoblasts during skeletal growth and at maturity, suggesting that the reduction in osteocytic OPG and the concomitant increase in osteocytic RANKL / OPG ratio contribute to the increased number of osteoclasts and resorption in osteocyte-specific β- catenin mutants. Together, these results reveal a crucial novel function for osteocyte β- catenin signaling in controlling bone homeostasis.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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