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Osteoclasts express high levels of pp60c-src in association with intracellular membranes
W C Horne1, L Neff, D Chatterjee
1Department of Cell Biology, Yale University School of Medicine, New Haven, Connecticut 06510.
Abstract:
Deletion of the c-src gene in transgenic mice by homologous recombination leads to osteopetrosis, a skeletal defect characterized by markedly deficient bone resorption (Soriano, P., C. Montgomery, R. Geske, and A. Bradley. 1991. Cell. 64:693-702), demonstrating a critical functional role of pp60c-src in osteoclast activity. Since decreased bone resorption could result from a defect either within the osteoclast or within other cells present in its environment, indirectly affecting osteoclast functions, we determined which cell(s) in bone expressed high levels of pp60c-src Measuring pp60c-src protein and kinase activities in osteoclasts and immunolocalizing pp60c-src in bone, we find that expression of pp60c-src is nearly as high in osteoclasts as in brain and platelets. In contrast, other bone cells contain only very low levels of the protein. In addition, expression of the c-src gene product increases when bone marrow cells are induced to express an osteoclast-like phenotype by 1,25-dihydroxy-vitamin D3, further suggesting that high expression of pp60c-src is part of the osteoclast phenotype. Three other src-like kinases, c-fyn, c-yes, and c-lyn, are also expressed in osteoclasts at ratios to pp60c-src similar to what is found in platelets. These src-related proteins do not, however, compensate for the absence of pp60c-src in the src- mice, thereby suggesting that pp60c-src may have a specific function in osteoclasts. Although further work is necessary to elucidate what the critical role of pp60c-src in osteoclasts is, our observation that the protein is associated mostly with the membranes of intracellular organelles suggests the possibility that this role might be at least in part related to the targeting or fusion of membrane vesicles.
Insights
Deletion of the c-src gene causes osteopetrosis, indicating pp60c-src is critical for osteoclast function. High expression in osteoclasts suggests a specific role, possibly in membrane vesicle trafficking.
Area of Science:
- Cell Biology
- Skeletal Biology
- Molecular Biology
Background:
- Osteopetrosis is a skeletal defect with deficient bone resorption.
- The c-src gene product, pp60c-src, plays a critical role in osteoclast activity.
- The precise cellular source and function of pp60c-src in bone resorption remain unclear.
Purpose of the Study:
- To determine which bone cells express high levels of pp60c-src.
- To investigate the functional significance of pp60c-src in osteoclasts.
- To explore the potential role of pp60c-src in membrane-related processes within osteoclasts.
Main Methods:
- Homologous recombination to create c-src gene-deleted mice.
- Measurement of pp60c-src protein and kinase activities.
- Immunolocalization of pp60c-src in bone.
- Induction of osteoclast-like phenotype in bone marrow cells with 1,25-dihydroxy-vitamin D3.
Main Results:
- Mice lacking c-src exhibit osteopetrosis due to deficient bone resorption.
- Osteoclasts express high levels of pp60c-src, comparable to brain and platelets.
- Other bone cells show very low pp60c-src levels; expression increases with osteoclast differentiation.
- Src-related kinases do not compensate for pp60c-src absence in mutant mice.
- pp60c-src is associated with intracellular organelle membranes in osteoclasts.
Conclusions:
- pp60c-src is essential for osteoclast function and bone resorption.
- High expression levels indicate pp60c-src is integral to the osteoclast phenotype.
- pp60c-src may be involved in membrane targeting or fusion, crucial for osteoclast activity.