Biochemical Journal · 1990 · 129 citations · 36 references
Chemoprevention StrategyPi-class Gst CdnasGst PiDrug ResistanceMolecular PharmacologyBiosynthesisYeastEvolutionary ProcessBiochemistryOncogenic AgentAnticancer Drugs AdriamycinPharmacologyCell BiologyCellular EnzymologyNatural SciencesCellular BiochemistrySystems BiologyMedicineDrug DiscoveryToxicogenomics
Adaptation and resistance to chemicals in the environment is a critical part of the evolutionary process. As a result, a wide variety of defence systems that protect cells against chemical insult have evolved. Such chemical resistance mechanisms appear to play a central role in determining the sensitivity of human tumours to treatment with chemotherapeutic drugs. The glutathione S-transferases (GST) are important detoxification enzymes whose over-expression has been associated with drug-resistance. In order to evaluate this possibility we have expressed the human Alpha-class and Pi-class GST cDNAs that encode GST B1B1 and GST pi in the yeast Saccharomyces cerevisiae. The expression of GST B1B1 or GST pi resulted in a marked reduction in the cytotoxic effects of chlorambucil, a bifunctional alkylating agent, and an anthracycline, adriamycin. These data provide direct evidence that the over-expression of GST in cells can confer resistance to anticancer drugs.
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Harry Towbin, T. Staehelin, J. Gordon · Proceedings of the National Academy of Sciences · 1979 · 53.8K citations · Full text
Immunocytochemical Technique, Glycobiology, Polyacrylamide Gels +19
William H. Habig, M. Pabst, William B. Jakoby · Journal of Biological Chemistry · 1974 · 17.9K citations · Full text
A rapid alkaline extraction procedure for screening recombinant plasmid DNA
H.C. Birnboim, Janine Doly · Nucleic Acids Research · 1979 · 14.8K citations · Full text