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Published on: August 25, 2021
Targeted mutation of p53 and Rb in mesenchymal cells of the limb bud produces sarcomas in mice
Patrick P Lin1, Manoj K Pandey, Fenghua Jin
1Department of Orthopaedic Oncology, The University of Texas M.D. Anderson Cancer Center, Houston, TX 77230-1402, USA. plin@mdanderson.org
Abstract:
Mice bearing germ line mutations of p53 develop sarcomas at a significant rate. Since they are susceptible to a variety of other malignancies, they are not ideally suited to the study of sarcomas. To test the possibility that targeted mutation of tumor suppressor genes in early mesenchymal cells would induce formation of sarcomas, the Prx1-cre transgenic mouse was crossed to mice-bearing floxed alleles of p53 and Rb. Mice with homozygous deletion of p53 (Prx1-cre p53(lox/lox)) developed sarcomas in the extremities at a mean time of 50 weeks. Osteosarcomas (OS) were the most common type of sarcoma (61%) followed by poorly differentiated soft tissue sarcomas (PDSTS) (32%). Homozygous deletion of p53 produced sarcomas significantly more rapidly than heterozygous deletion, which resulted in sarcoma formation after a mean of 96 weeks. Mice with homozygous Rb mutation (Prx1-cre Rb(lox/lox)) developed normally and had no ostensible defects in the limbs. In contrast to p53, targeted deletion of Rb did not produce sarcomas in the limbs. However, simultaneous deletion of Rb and p53 accelerated the time to sarcoma formation, and a greater percentage of PDSTS were found. Deletion of p53 in committed osteoblasts by the Col1a1-cre transgenic mouse bearing an osteoblast-specific enhancer resulted in a high percentage of OS. These findings suggest that deletion of p53 in mesenchymal cells that give rise to osteoblasts is a powerful initiator of OS. Deletion of Rb does not initiate sarcoma formation in mice, but it accelerates formation of both soft tissue sarcomas and OS.
Insights
Targeting tumor suppressor genes p53 and Rb in mice mesenchymal cells initiated sarcoma formation. Deleting p53 rapidly induced osteosarcomas and soft tissue sarcomas, while Rb deletion accelerated their development.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Germ line mutations in p53 lead to sarcoma development in mice, but also other cancers, limiting their utility for sarcoma research.
- Targeted mutation of tumor suppressor genes in specific cell types is a strategy to study cancer initiation.
Purpose of the Study:
- To investigate whether targeted mutation of p53 and Rb in early mesenchymal cells induces sarcoma formation.
- To determine the specific roles of p53 and Rb in initiating and promoting sarcoma development.
Main Methods:
- Crossed Prx1-cre transgenic mice with mice bearing floxed alleles of p53 and Rb.
- Analyzed sarcoma development in mice with homozygous and heterozygous deletions of p53.
- Assessed sarcoma formation in mice with homozygous Rb deletion.
- Investigated simultaneous deletion of Rb and p53.
- Utilized Col1a1-cre mice for p53 deletion in committed osteoblasts.
Main Results:
- Homozygous p53 deletion (Prx1-cre p53(lox/lox)) resulted in sarcomas (61% osteosarcomas, 32% PDSTS) by 50 weeks.
- Homozygous p53 deletion induced sarcomas faster than heterozygous deletion (96 weeks).
- Rb deletion alone did not induce sarcomas but accelerated sarcoma formation when combined with p53 deletion.
- p53 deletion in osteoblasts (Col1a1-cre) led to a high incidence of osteosarcomas.
Conclusions:
- Targeted deletion of p53 in mesenchymal cells, particularly those giving rise to osteoblasts, is a potent initiator of osteosarcomas.
- Rb deletion does not initiate sarcoma but accelerates the formation of both soft tissue sarcomas and osteosarcomas.
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