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Defining Gene Functions in Tumorigenesis by Ex vivo Ablation of Floxed Alleles in Malignant Peripheral Nerve Sheath Tumor Cells
Published on: August 25, 2021
Influence of a nonfragile FHIT transgene on murine tumor susceptibility
K A McCorkell1, R Mancini, Z Siprashvili
1Department of Microbiology and Immunology, Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, PA, USA.
Abstract:
FHIT, at a constitutively active chromosome fragile site, is often a target of chromosomal aberrations and deletion in a large fraction of human tumors. Inactivation of murine Fhit allelessignificantly increases susceptibility of mice to spontaneous and carcinogen-induced tumorigenesis. In this study, transgenic mice, carrying a human FHIT cDNA under control of the endogenous promoter, were produced to determine the effect of Fhit expression, from a nonfragile cDNA transgene outside the fragile region, on carcinogen-induced tumor susceptibility of wildtype and Fhit heterozygous mice. Mice received sufficient oral doses of N-nitrosomethybenzylamine (NMBA) to cause forestomach tumors in >80% of nontransgenic control mice. Although the level of expression of the FHIT transgene in the recombinant mouse strains was much lower than the level of endogenous Fhit expression, the tumor burden in NMBA-treated male transgenic mice was significantly reduced, while female transgenic mice were not protected. To determine if the difference in protection could be due to differences in epigenetic changes at the transgene loci in male versus female mice, we examined expression, hypermethylation and induced re-expression of FHIT transgenes in male and female mice or cells derived from them. The transgene was methylated in male and female mice and in cell lines established from male and female transgenic kidneys, the FHIT locus was both hypermethylated and deacetylated. It is likely that the FHIT transgene is more tightly silenced in female transgenic mice, leading to a lack of protection from tumor induction.
Insights
The FHIT gene, crucial in tumor suppression, showed protective effects against carcinogen-induced tumors in male transgenic mice. Female mice lacked this protection, likely due to FHIT transgene silencing.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- The FHIT gene, located at a fragile site, is frequently altered in human tumors.
- Loss of Fhit function in mice increases susceptibility to spontaneous and carcinogen-induced cancers.
Purpose of the Study:
- To investigate the impact of a human FHIT cDNA transgene on carcinogen-induced tumor susceptibility in mice.
- To explore sex-specific differences in FHIT transgene-mediated protection against N-nitrosomethybenzylamine (NMBA)-induced forestomach tumors.
Main Methods:
- Generation of transgenic mice carrying a human FHIT cDNA under endogenous promoter control.
- Administration of NMBA to induce forestomach tumors in transgenic and wildtype mice.
- Analysis of FHIT transgene expression, methylation, and acetylation in male and female mice and derived cell lines.
Main Results:
- NMBA treatment significantly reduced tumor burden in male transgenic mice, but not in females, despite lower transgene expression than endogenous FHIT.
- FHIT transgene loci in both sexes were methylated and deacetylated.
- Evidence suggests tighter silencing of the FHIT transgene in female mice compared to males.
Conclusions:
- FHIT transgene expression can confer protection against carcinogen-induced tumorigenesis, with observed sex-specific efficacy.
- Epigenetic silencing, particularly hypermethylation and deacetylation, may underlie the lack of protection in female transgenic mice.
- Further research into sex-based epigenetic regulation of tumor suppressor genes is warranted.

