Selective Inactivation of p53 Facilitates Mouse Epithelial Tumor Progression without Chromosomal Instability
Open Access
- 1 September 2001
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 21 (17) , 6017-6030
- https://doi.org/10.1128/mcb.21.17.6017-6030.2001
Abstract
We examined the selective pressure for, and the impact of, p53 inactivation during epithelial tumor evolution in a transgenic brain tumor model. In TgT121 mice, cell-specific inactivation of the pRb pathway in brain choroid plexus epithelium initiates tumorigenesis and induces p53-dependent apoptosis. We previously showed that p53 deficiency accelerates tumor growth due to diminished apoptosis. Here we show that in a p53+/− background, slow-growing dysplastic tissue undergoes clonal progression to solid angiogenic tumors in all animals. p53 is inactivated in all progressed tumors, with loss of the wild-type allele occurring in 90% of tumors. Moreover, similar progression occurs in 38% of TgT121p53+/+ mice, also with loss of at least one p53 allele and inactivation of p53. Thus, the selective pressure for p53 inactivation, likely based on its apoptotic function, is high. Yet, in all cases, p53 inactivation correlates with progression beyond apoptosis reduction, from dysplasia to solid vascularized tumors. Hence, p53 suppresses tumor progression in this tissue by multiple mechanisms. Previous studies of fibroblasts and hematopoietic cells show that p53 deficiency can be associated with chromosomal instability, a mechanism that may drive tumor progression. To determine whether genomic gains or losses are present in tumors that progress in the absence of p53, we performed comparative genomic hybridization analysis. Surprisingly, the only detectable chromosomal imbalance was partial or complete loss of chromosome 11, which harbors the p53 gene and is thus the selected event. Flow cytometry confirmed that the majority of tumor cells were diploid. These studies indicate that loss of p53 function is frequent under natural selective pressures and furthermore that p53 loss can facilitate epithelial tumor progression by a mechanism in addition to apoptosis reduction and distinct from chromosomal instability.Keywords
This publication has 74 references indexed in Scilit:
- Retention of wild-type p53 in tumors from p53 heterozygous mice: reduction of p53 dosage can promote cancer formationThe EMBO Journal, 1998
- Chromosomal instability is correlated with telomere erosion and inactivation of G2 checkpoint function in human fibroblasts expressing human papillomavirus type 16 E6 oncoproteinOncogene, 1998
- Essential role for p53-mediated transcription in E1A-induced apoptosis.Genes & Development, 1995
- Myc-mediated apoptosis requires wild-type p53 in a manner independent of cell cycle arrest and the ability of p53 to induce p21waf1/cip1.Genes & Development, 1994
- Tumor spectrum analysis in p53-mutant miceCurrent Biology, 1994
- Altered cell cycle arrest and gene amplification potential accompany loss of wild-type p53Published by Elsevier ,1992
- Wild-type p53 restores cell cycle control and inhibits gene amplification in cells with mutant p53 allelesCell, 1992
- p53, guardian of the genomeNature, 1992
- The p53 tumour suppressor geneNature, 1991
- Mutations in the p53 gene occur in diverse human tumour typesNature, 1989