Activation of c-Ha-ras-1 proto-oncogene by in vitro modification with a chemical carcinogen, benzo(a)pyrene diol-epoxide
- 16 August 1984
- journal article
- Published by Springer Nature in Nature
- Vol. 310 (5978), 586-589
- https://doi.org/10.1038/310586a0
Abstract
Chemical carcinogenesis generally proceeds via the formation of strongly electrophilic reactants, termed ultimate carcinogens. The observation that many ultimate carcinogens are potent mutagens and the results of studies on the covalent binding of carcinogens to cellular macromolecules suggest that tumour initiation results from mutations arising from the binding of ultimate carcinogens to DNA. Recently, gene transfer experiments have shown that some tumours contain activated oncogenes which are members of the ras gene family (reviewed in refs 6. 7) and which differ by single base pair substitutions from their non-transforming counterparts, the proto-oncogenes (see, for example, refs 8-11). Here we have used clones of the c-Ha-ras-1 proto-oncogene to show that reaction in vitro with an ultimate carcinogen generates a transforming oncogene when the modified DNA is introduced into NIH 3T3 cells. As DNA is the only cellular macromolecule present in the reactions, our experiments also show that reaction of an ultimate carcinogen with DNA alone can lead to the induction of mutations in mammalian cells.Keywords
This publication has 27 references indexed in Scilit:
- Activation of Ki-ras2 gene in human colon and lung carcinomas by two different point mutationsNature, 1983
- Fifty years of benzo(a)pyreneNature, 1983
- Acquisition of transforming properties by alternative point mutations within c-bas/has human proto-oncogeneNature, 1983
- Color Vision Is Altered During the Suppression Phase of Binocular RivalryScience, 1982
- A point mutation is responsible for the acquisition of transforming properties by the T24 human bladder carcinoma oncogeneNature, 1982
- Mechanism of activation of a human oncogeneNature, 1982
- Carcinogenic epoxides of benzo[a]pyrene and cyclopenta[cd]pyrene induce base substitutions via specific transversions.Proceedings of the National Academy of Sciences, 1982
- Searches for ultimate chemical carcinogens and their reactions with cellular macromoleculesCancer, 1981
- Carcinogens are Mutagens: A Simple Test System Combining Liver Homogenates for Activation and Bacteria for DetectionProceedings of the National Academy of Sciences, 1973
- Evidence for the Binding of Polynuclear Aromatic Hydrocarbons to the Nucleic Acids of Mouse Skin : Relation between Carcinogenic Power of Hydrocarbons and their Binding to Deoxyribonucleic AcidNature, 1964