Abstract

The receptor activator of NF-kappaB ligand (RANKL) induces osteoclast differentiation from bone marrow cells in the presence of macrophage colony-stimulating factor. We found that treatment of bone marrow cells with SB203580 inhibited osteoclast differentiation via inhibition of the RANKL-mediated signaling pathway. To elucidate the role of p38 mitogen-activated protein (MAP) kinase pathway in osteoclastogenesis, we employed RAW264 cells which could differentiate into osteoclast-like cells following treatment with RANKL. In a dose-dependent manner, SB203580 but not PD98059, inhibited RANKL-induced differentiation. Among three MAP kinase families tested, this inhibition profile coincided only with the activation of p38 MAP kinase. Expression in RAW264 cells of the dominant negative form of either p38alpha MAP kinase or MAP kinase kinase (MKK) 6 significantly inhibited RANKL-induced differentiation of the cells. These results indicate that activation of the p38 MAP kinase pathway plays an important role in RANKL-induced osteoclast differentiation of precursor bone marrow cells.

Highlights

  • Bone morphogenesis, remodeling, and resorption are controlled in part by osteoclasts

  • Characterization of Osteoclast Differentiation from Bone Marrow Cells Induced by M-CSF and sRANKL—It is well known that the treatment of bone marrow cells with M-CSF and RANKL induces osteoclast differentiation (6, 10 –15)

  • These results suggest that in combination with M-CSF, RANKL plays an essential role in the induction of osteoclast differentiation

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Summary

Introduction

Bone morphogenesis, remodeling, and resorption are controlled in part by osteoclasts. Our results indicate for the first time that activation of the p38 MAP kinase pathway plays a role in RANKL-induced osteoclast differentiation. The results described above strongly suggest that activation of the p38 MAP kinase signaling pathway is involved in the RANKL-induced differentiation of bone marrow cells into osteoclasts.

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