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Chemically induced forestomach papillomas in transgenic mice carry mutant human c-Ha-ras transgenes
1Department of DNA Biology, School of Medicine, Tokai University, Tokyo, Japan.
Abstract:
Forestomach papillomas and skin papillomas were induced very efficiently by a single dose administration of the chemical carcinogen methylnitrosourea (MNU) in transgenic mice (rasH2 line) carrying human hybrid c-Ha-ras genes, which encode the prototype p21 gene product. The incidence of forestomach papillomas was dose dependent; when 50 mg/kg of MNU were administered i.p., all of the transgenic mice (56 of 56) developed forestomach papillomas within 12 weeks after administration, whereas 5 and 0.5 mg/kg of MNU induced papillomas in 2 of 19 and 1 of 19 mice, respectively. Nine of 56 transgenic mice (16%) also developed skin papillomas at sites wounded by bites or scratches. Only 1 of 77 nontransgenic littermates developed forestomach papillomas after administration of 50 mg/kg of MNU, and no skin papillomas appeared within 12 weeks after MNU administration. The transgenes (integrated copy number, 5-6) in the tumors developed in 55 of 56 affected transgenic mice (98%) contained at least 1 copy of the transgene that was activated by somatic point mutation at the 12th codon, from GGC (Gly) to GAC (Asp). Because somatic point mutations at the 12th or 61st codon of transgenes have never been detected in normal tissues of transgenic mice thus far examined, these mutational activations of transgenes are tumor-specific events. RNA expression of these activated transgenes was also detected. From these results, it is suggested that somatic mutational activation of the human c-Ha-ras transgene plays a causative role in the occurrence of forestomach and skin papillomas induced by MNU administration in these transgenic mice. This transgenic mouse provides a unique screening system for chemicals that induce or suppress papillomagenesis.
Insights
Methylnitrosourea (MNU) efficiently induced forestomach and skin papillomas in rasH2 transgenic mice. Tumor development was linked to somatic mutational activation of the human c-Ha-ras transgene, suggesting a role in papillomagenesis.
Area of Science:
- Oncology
- Genetics
- Toxicology
Background:
- Transgenic mouse models are crucial for understanding carcinogenesis.
- The rasH2 mouse line, carrying human c-Ha-ras genes, is susceptible to carcinogen-induced tumors.
- Methylnitrosourea (MNU) is a known chemical carcinogen.
Purpose of the Study:
- To investigate the efficacy of MNU in inducing papillomas in rasH2 transgenic mice.
- To determine the role of c-Ha-ras transgene activation in MNU-induced tumorigenesis.
- To evaluate the potential of this model as a screening system for papillomagenesis.
Main Methods:
- Single-dose administration of MNU to rasH2 transgenic mice and non-transgenic littermates.
- Monitoring of forestomach and skin papilloma incidence and development over 12 weeks.
- Genomic analysis of tumors to detect c-Ha-ras transgene mutations.
- RNA expression analysis of activated transgenes.
Main Results:
- MNU efficiently induced forestomach papillomas in a dose-dependent manner in rasH2 mice (100% incidence at 50 mg/kg).
- Skin papillomas also developed in MNU-treated rasH2 mice (16%).
- Tumorigenesis in rasH2 mice was associated with somatic point mutations (GGC to GAC at codon 12) activating the c-Ha-ras transgene, which were tumor-specific events.
Conclusions:
- Somatic mutational activation of the human c-Ha-ras transgene plays a causative role in MNU-induced forestomach and skin papillomas in rasH2 mice.
- The rasH2 transgenic mouse model is a sensitive system for screening chemicals that induce or suppress papillomagenesis.