A Mouse Model Recapitulating Molecular Features of Human Mesothelioma
- 15 September 2005
- journal article
- Published by American Association for Cancer Research (AACR) in Cancer Research
- Vol. 65 (18) , 8090-8095
- https://doi.org/10.1158/0008-5472.can-05-2312
Abstract
Malignant mesothelioma has been linked to asbestos exposure and generally has a poor prognosis because it is often diagnosed in advanced stages and is refractory to conventional therapy. Human malignant mesotheliomas accumulate multiple somatic genetic alterations, including inactivation of the NF2 and CDKN2A/ARF tumor suppressor genes. To better understand the significance of NF2 inactivation in malignant mesothelioma and identify tumor suppressor gene alterations that cooperate with NF2 loss of function in malignant mesothelioma pathogenesis, we treated Nf2 (+/−) knockout mice with asbestos to induce malignant mesotheliomas. Asbestos-exposed Nf2 (+/−) mice exhibited markedly accelerated malignant mesothelioma tumor formation compared with asbestos-treated wild-type (WT) littermates. Loss of the WT Nf2 allele, leading to biallelic inactivation, was observed in all nine asbestos-induced malignant mesotheliomas from Nf2 (+/−) mice and in 50% of malignant mesotheliomas from asbestos-exposed WT mice. For a detailed comparison with the murine model, DNA analyses were also done on a series of human malignant mesothelioma samples. Remarkably, similar to human malignant mesotheliomas, tumors from Nf2 (+/−) mice showed frequent homologous deletions of the Cdkn2a/Arf locus and adjacent Cdkn2b tumor suppressor gene, as well as reciprocal inactivation of Tp53 in a subset of tumors that retained the Arf locus. As in the human disease counterpart, malignant mesotheliomas from the Nf2 (+/−) mice also showed frequent activation of Akt kinase, which plays a central role in tumorigenesis and therapeutic resistance. Thus, this murine model of environmental carcinogenesis faithfully recapitulates many of the molecular features of human malignant mesothelioma and has significant implications for the further characterization of malignant mesothelioma pathogenesis and preclinical testing of novel therapeutic modalities.Keywords
This publication has 16 references indexed in Scilit:
- Human and mouse mesotheliomas exhibit elevated AKT/PKB activity, which can be targeted pharmacologically to inhibit tumor cell growthOncogene, 2005
- The NF2 Tumor Suppressor Gene Product, Merlin, Inhibits Cell Proliferation and Cell Cycle Progression by Repressing Cyclin D1 ExpressionMolecular and Cellular Biology, 2005
- Modern Criteria to Establish Human Cancer EtiologyCancer Research, 2004
- Targeting the PI3K-Akt pathway in human cancerCancer Cell, 2003
- Hemizygosity of Nf2 is associated with increased susceptibility to asbestos-induced peritoneal tumoursOncogene, 2003
- Asbestos, chromosomal deletions, and tumor suppressor gene alterations in human malignant mesotheliomaJournal of Cellular Physiology, 1999
- Growth Factor Responses and Protooncogene Expression of Murine Mesothelial Cell Lines Derived from Asbestos-Induced MesotheliomasToxicologic Pathology, 1997
- Susceptibility of p53-deficient mice to induction of mesothelioma by crocidolite asbestos fibers.Environmental Health Perspectives, 1997
- Characterization of the rat neurofibromatosis 2 gene and its involvement in asbestos-induced mesotheliomaMolecular Carcinogenesis, 1997
- The Pathogenesis of Asbestos-Associated DiseasesNew England Journal of Medicine, 1982