Rb1 and Pten Co-Deletion in Osteoblast Precursor Cells Causes Rapid Lipoma Formation in Mice
Emma A Filtz1, Ann Emery2, Huarui Lu1
1Department of Pediatrics, University of Minnesota, Minneapolis, MN, United States of America.
Abstract:
The Rb and Pten tumor suppressor genes are important regulators of bone development and both are frequently mutated in the bone cancer osteosarcoma (OS). To determine if Rb1 and Pten synergize as tumor suppressor genes for osteosarcoma, we co-deleted them in osteoprogenitor cells. Surprisingly, we observed rapid development of adipogenic but not osteosarcoma tumors in the ΔRb1/Pten mice. ΔPten solo deleted mice also developed lipoma tumors but at a much reduced frequency and later onset than those co-deleted for Rb1. Pten deletion also led to a marked increase in adipocytes in the bone marrow. To better understand the function of Pten in bone development in vivo, we conditionally deleted Pten in OSX(+) osteoprogenitor cells using OSX-Cre mice. μCT analysis revealed a significant thickening of the calvaria and an increase in trabeculae volume and number in the femur, consistent with increased bone formation in these mice. To determine if Pten and Rb1 deletion actively promotes adipogenic differentiation, we isolated calvarial cells from Pten(fl/fl) and Pten(fl/fl); Rb1(fl/fl) mice, infected them with CRE or GFP expressing adenovirus, treated with differentiation media. We observed slightly increased adipogenic, and osteogenic differentiation in the ΔPten cells. Both phenotypes were greatly increased upon Rb1/Pten co-deletion. This was accompanied by an increase in expression of genes required for adipogenesis. These data indicate that Pten deletion in osteoblast precursors is sufficient to promote frequent adipogenic, but only rare osteogenic tumors. Rb1 hetero- or homo-zygous co-deletion greatly increases the incidence and the rapidity of onset of adipogenic tumors, again, with only rare osteosarcoma tumors.
Insights
Deleting Rb1 and Pten tumor suppressor genes in bone cells surprisingly promotes fat cell tumors (lipomas) instead of bone cancer (osteosarcoma). Co-deleting Rb1 and Pten accelerates lipoma development.
Area of Science:
- Oncology
- Genetics
- Bone Biology
Background:
- Rb (Retinoblastoma) and Pten (Phosphatase and Tensin homolog) are critical tumor suppressor genes involved in bone development.
- Mutations in Rb1 and Pten are frequently observed in osteosarcoma, a common bone cancer.
Purpose of the Study:
- To investigate the synergistic role of Rb1 and Pten as tumor suppressors in osteosarcoma development.
- To elucidate the function of Pten in bone development and its interplay with Rb1.
Main Methods:
- Conditional deletion of Rb1 and Pten genes in osteoprogenitor cells using genetic mouse models (OSX-Cre).
- Analysis of tumor development, bone formation (μCT), and adipogenic/osteogenic differentiation in isolated cells.
- Gene expression analysis of differentiation markers.
Main Results:
- Co-deletion of Rb1 and Pten rapidly induced adipogenic tumors (lipomas) but not osteosarcoma.
- Pten deletion alone increased adipocyte numbers in bone marrow and promoted adipogenic differentiation.
- Rb1 co-deletion significantly accelerated lipoma onset and incidence.
Conclusions:
- Pten deletion in osteoblast precursors promotes adipogenic differentiation and tumor formation.
- Rb1 and Pten act synergistically to suppress adipogenesis, and their combined loss drives rapid lipoma development.
- These findings suggest a complex role for Rb1 and Pten in bone tumorigenesis, favoring adipogenesis over osteosarcoma.
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