Abstract
Astrocytoma is the most common malignant brain tumor in humans. Loss of the p53 signaling pathway and up-regulation of the ras signaling pathway are common during tumor progression. We have shown previously that mice mutant for Trp53 and Nf1 develop astrocytoma, progressing to glioblastoma, on a C57BL/6J strain background. In contrast, here we present data that mice mutant for Trp53 and Nf1 on a 129S4/SvJae background are highly resistant to developing astrocytoma. Through analysis of F1 progeny, we demonstrate that susceptibility to astrocytoma is linked to chromosome 11, and that the modifier gene(s) responsible for differences in susceptibility is closely linked to Nf1 and Trp53. Furthermore, this modifier of astrocytoma susceptibility is itself epigenetically modified. These data demonstrate that epigenetic effects can have a strong effect on whether cancer develops in the context of mutant ras signaling and mutant p53, and that this mouse model of astrocytoma can be used to identify modifier phenotypes with complex inheritance patterns that would be unidentifiable in humans. Because analysis of gene function in the mouse is often performed on a mixed C57BL/6,129 strain background, these data also provide a powerful example of the potential of these strains to mask interesting gene functions.
MeSH Terms
Animals
Apoptosis Regulatory Proteins
Astrocytoma/genetics,pathology
Carrier Proteins/genetics
Crosses, Genetic
Female
Genetic Linkage
Genetic Predisposition to Disease
Heat-Shock Proteins/genetics
Male
Mice
Models, Genetic
Neurofibromin 1/genetics
Chemicals
Apoptosis Regulatory Proteins
Carrier Proteins
Heat-Shock Proteins
Neurofibromin 1
Trp53inp1 protein, mouse
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Reilly Karlyne M
Mouse Cancer Genetics Program, National Cancer Institute, Frederick, MD 21702, USA. kreilly@ncifcrf.gov
Tuskan Robert G
Christy Emily
Loisel Dagan A
Ledger Jeremy
Bronson Roderick T
Smith C Dahlem
Tsang Shirley
Munroe David J
Jacks Tyler
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