Structure, expression and activation of fish ras genes

J M Rotchell1, J S Lee, J K Chipman

  • 1Centre for Environmental Research, School of Chemistry, Physics and Environmental Science, University of Sussex, Falmer, Brighton BN1 9QJ, UK.

Insights

Ras gene mutations are linked to tumors in fish, but the specific mutations and their occurrence vary significantly by species. This species-specific pattern influences susceptibility to environmental contaminants and tumor development.

Area of Science:

  • Environmental toxicology
  • Molecular biology
  • Oncology

Background:

  • Ras genes are crucial for cell growth signaling and are frequently mutated in mammalian tumors, typically at specific codons.
  • Fish ras genes share high sequence similarity with mammalian counterparts, suggesting a conserved role in cell signaling.

Purpose of the Study:

  • To investigate the occurrence and patterns of ras gene mutations in fish exposed to genotoxic compounds and in feral fish from contaminated environments.
  • To compare the ras mutational profiles in fish with those in mammalian and rodent models.
  • To explore the species-specific susceptibility to environmentally induced tumors.

Main Methods:

  • Experimental exposure of fish to genotoxic compounds to generate ras mutational profiles.
  • Analysis of ras gene mutations in liver samples from feral fish collected from hydrocarbon-contaminated areas.
  • Comparison of mutational spectra across different fish species, tissues, and exposure conditions.

Main Results:

  • Experimental exposures revealed that the ras mutational spectrum in fish is influenced by the inducing compound, tissue, and species.
  • A novel ras codon 16 mutation was identified in fish, differing from mammalian mutation sites.
  • Ras gene mutations were detected in some feral fish species (tomcod, winter flounder, dragonet) from contaminated sites, but not in others (English sole, European flounder).
  • The incidence and pattern of ras gene mutations in environmentally induced tumors were found to be species-specific.

Conclusions:

  • Fish ras genes are involved in tumor formation, but their mutational profiles exhibit significant species-specific variations.
  • These variations contribute to differences in susceptibility to environmental contaminants and tumor development observed in field and laboratory studies.
  • Further research into the interaction of fish ras genes with other signaling pathway components and the role of promoting agents is needed to fully understand species susceptibility.

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