1. The Osteoclast Differentiation Factor Osteoprotegerin-Ligand Is Essential for Mammary Gland Development
- Author
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Josef M. Penninger, Jimmie E. Fata, Evelyn B. Voura, Junko Irie-Sasaki, Roger A. Moorehead, Rama Khokha, Robin Elliott, William J. Boyle, Ji Li, Young-Yun Kong, Takehiko Sasaki, Sheila Scully, and David L. Lacey
- Subjects
medicine.medical_specialty ,Cell Survival ,Mammary gland ,Morphogenesis ,Receptors, Cytoplasmic and Nuclear ,Protein Serine-Threonine Kinases ,Biology ,Receptors, Tumor Necrosis Factor ,General Biochemistry, Genetics and Molecular Biology ,Bone remodeling ,Mice ,Mammary Glands, Animal ,Osteoprotegerin ,Pregnancy ,Osteoclast ,Proto-Oncogene Proteins ,Internal medicine ,medicine ,Animals ,Phosphorylation ,Gonadal Steroid Hormones ,Receptor ,Glycoproteins ,Mice, Knockout ,Membrane Glycoproteins ,Receptor Activator of Nuclear Factor-kappa B ,Biochemistry, Genetics and Molecular Biology(all) ,RANK Ligand ,Epithelial Cells ,Transplantation ,Phenotype ,medicine.anatomical_structure ,Endocrinology ,Osteoporosis ,Female ,Bone Remodeling ,Carrier Proteins ,Proto-Oncogene Proteins c-akt ,Cell Division - Abstract
Osteoprotegerin-ligand (OPGL) is a key osteoclast differentiation/activation factor essential for bone remodeling. We report that mice lacking OPGL or its receptor RANK fail to form lobulo-alveolar mammary structures during pregnancy, resulting in death of newborns. Transplantation and OPGL-rescue experiments in opgl−/− and rank−/− pregnant females showed that OPGL acts directly on RANK-expressing mammary epithelial cells. The effects of OPGL are autonomous to epithelial cells. The mammary gland defect in female opgl−/− mice is characterized by enhanced apoptosis and failures in proliferation and PKB activation in lobulo-alveolar buds that can be reversed by recombinant OPGL treatment. These data provide a novel paradigm in mammary gland development and an evolutionary rationale for hormonal regulation and gender bias of osteoporosis in females.
- Published
- 2000
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