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Recombinant Vgr-1/BMP-6-expressing tumors induce fibrosis and endochondral bone formation in vivo
S E Gitelman1, M S Kobrin, J Q Ye
1Department of Pediatrics, University of California at San Francisco 94143.
Abstract:
Members of the TGF-beta superfamily appear to modulate mesenchymal differentiation, including the processes of cartilage and bone formation. Nothing is yet known about the function of the TGF-beta-related factor vgr-1, also called bone morphogenetic protein-6 (BMP-6), and only limited studies have been conducted on the most closely related factors BMP-5, osteogenic protein-1 (OP-1) or BMP-7, and OP-2. Because vgr-1 mRNA has been localized in hypertrophic cartilage, this factor may play a vital role in endochondral bone formation. We developed antibodies to vgr-1, and documented that vgr-1 protein was expressed in hypertrophic cartilage of mice. To further characterize the role of this protein in bone differentiation, we generated CHO cells that overexpressed recombinant murine vgr-1 protein. Western blot analysis documented that recombinant vgr-1 protein was secreted into the media and was proteolytically processed to yield the mature vgr-1 molecule. To assess the biological activity of recombinant vgr-1 in vivo, we introduced the vgr-1-expressing CHO cells directly into the subcutaneous tissue of athymic nude mice. CHO-vgr-1 cells produced localized tumors, and the continuous secretion of vgr-1 resulted in tumors with a strikingly different gross and histological appearance as compared to the parental CHO cells. The tumors of control CHO cells were hemorrhagic, necrotic, and friable, whereas the CHO-vgr-1 tumors were dense, firm, and fibrotic. In contrast with control CHO tumors, the nests of CHO-vgr-1 tumor cells were surrounded by extensive connective tissue, which contained large regions of cartilage and bone. Further analysis indicated that secretion of vgr-1 from the transfected CHO tumor cells induced the surrounding host mesenchymal cells to develop along the endochondral bone pathway. These findings suggest that endochondral bone formation.
Insights
Bone morphogenetic protein-6 (BMP-6) plays a vital role in endochondral bone formation. Recombinant BMP-6 secreted by CHO cells induced surrounding host cells to form cartilage and bone.
Area of Science:
- Cell Biology
- Developmental Biology
- Biochemistry
Background:
- Members of the TGF-beta superfamily regulate mesenchymal differentiation, including cartilage and bone formation.
- The function of TGF-beta-related factor vgr-1 (bone morphogenetic protein-6, BMP-6) is largely unknown.
- vgr-1 mRNA is found in hypertrophic cartilage, suggesting a role in endochondral bone formation.
Purpose of the Study:
- To investigate the role of vgr-1 (BMP-6) in bone differentiation.
- To characterize the biological activity of recombinant vgr-1 in vivo.
Main Methods:
- Developed antibodies to vgr-1 and confirmed its expression in mouse hypertrophic cartilage.
- Generated Chinese Hamster Ovary (CHO) cells overexpressing recombinant murine vgr-1 protein.
- Assessed the in vivo biological activity of secreted vgr-1 by implanting CHO-vgr-1 cells into athymic nude mice.
Main Results:
- Recombinant vgr-1 protein was secreted and proteolytically processed in vitro.
- CHO-vgr-1 tumors exhibited distinct dense, firm, and fibrotic characteristics compared to control CHO tumors.
- Extensive connective tissue, cartilage, and bone formation were observed surrounding CHO-vgr-1 tumors.
- Secreted vgr-1 induced surrounding host mesenchymal cells to differentiate along the endochondral bone pathway.
Conclusions:
- vgr-1 (BMP-6) is expressed in hypertrophic cartilage and plays a significant role in endochondral bone formation.
- Secreted vgr-1 can induce ectopic cartilage and bone formation by stimulating host mesenchymal cell differentiation.