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Chemically induced forestomach papillomas in transgenic mice carry mutant human c-Ha-ras transgenes

K Ando1, A Saitoh, O Hino

  • 1Department of DNA Biology, School of Medicine, Tokai University, Tokyo, Japan.

Cancer Research
|February 15, 1992
PubMed

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.

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