RANK is the intrinsic hematopoietic cell surface receptor that controls osteoclastogenesis and regulation of bone mass and calcium metabolism

2000 Proceedings of the National Academy of Sciences 1,117 citations

Abstract

We have generated RANK (receptor activator of NF-κB) nullizygous mice to determine the molecular genetic interactions between osteoprotegerin, osteoprotegerin ligand, and RANK during bone resorption and remodeling processes. RANK −/− mice lack osteoclasts and have a profound defect in bone resorption and remodeling and in the development of the cartilaginous growth plates of endochondral bone. The osteopetrosis observed in these mice can be reversed by transplantation of bone marrow from rag1 −/− (recombinase activating gene 1) mice, indicating that RANK −/− mice have an intrinsic defect in osteoclast function. Calciotropic hormones and proresorptive cytokines that are known to induce bone resorption in mice and human were administered to RANK −/− mice without inducing hypercalcemia, although tumor necrosis factor α treatment leads to the rare appearance of osteoclast-like cells near the site of injection. Osteoclastogenesis can be initiated in RANK −/− mice by transfer of the RANK cDNA back into hematopoietic precursors, suggesting a means to critically evaluate RANK structural features required for bone resorption. Together these data indicate that RANK is the intrinsic cell surface determinant that mediates osteoprotegerin ligand effects on bone resorption and remodeling as well as the physiological and pathological effects of calciotropic hormones and proresorptive cytokines.

Keywords

Bone resorptionOsteoclastOsteoprotegerinBone remodelingEndocrinologyInternal medicineChemistryResorptionReceptorRANK LigandCell biologyBiologyActivator (genetics)Medicine

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Publication Info

Year
2000
Type
article
Volume
97
Issue
4
Pages
1566-1571
Citations
1117
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Ji Li, Ildiko Sarosi, Xiaoqiang Yan et al. (2000). RANK is the intrinsic hematopoietic cell surface receptor that controls osteoclastogenesis and regulation of bone mass and calcium metabolism. Proceedings of the National Academy of Sciences , 97 (4) , 1566-1571. https://doi.org/10.1073/pnas.97.4.1566

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DOI
10.1073/pnas.97.4.1566