Biphasic and Dosage-Dependent Regulation of Osteoclastogenesis by β-Catenin

Author:

Wei Wei1,Zeve Daniel2,Suh Jae Myoung2,Wang Xueqian1,Du Yang1,Zerwekh Joseph E.34,Dechow Paul C.5,Graff Jonathan M.263,Wan Yihong1

Affiliation:

1. Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas, Texas 75390

2. Department of Developmental Biology, University of Texas Southwestern Medical Center, Dallas, Texas 75390

3. Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, Texas 75390

4. Center for Mineral Metabolism and Clinical Research, University of Texas Southwestern Medical Center, Dallas, Texas 75390

5. Department of Biomedical Sciences, Baylor College of Dentistry, Texas A&M University Health Sciences Center, Dallas, Texas 75246

6. Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, Texas 75390

Abstract

ABSTRACT Wnt/β-catenin signaling is a critical regulator of skeletal physiology. However, previous studies have mainly focused on its roles in osteoblasts, while its specific function in osteoclasts is unknown. This is a clinically important question because neutralizing antibodies against Wnt antagonists are promising new drugs for bone diseases. Here, we show that in osteoclastogenesis, β-catenin is induced during the macrophage colony-stimulating factor (M-CSF)-mediated quiescence-to-proliferation switch but suppressed during the RANKL-mediated proliferation-to-differentiation switch. Genetically, β-catenin deletion blocks osteoclast precursor proliferation, while β-catenin constitutive activation sustains proliferation but prevents osteoclast differentiation, both causing osteopetrosis. In contrast, β-catenin heterozygosity enhances osteoclast differentiation, causing osteoporosis. Biochemically, Wnt activation attenuates whereas Wnt inhibition stimulates osteoclastogenesis. Mechanistically, β-catenin activation increases GATA2/Evi1 expression but abolishes RANKL-induced c-Jun phosphorylation. Therefore, β-catenin exerts a pivotal biphasic and dosage-dependent regulation of osteoclastogenesis. Importantly, these findings suggest that Wnt activation is a more effective treatment for skeletal fragility than previously recognized that confers dual anabolic and anti-catabolic benefits.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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