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Cloning and expression of a yeast copper metallothionein gene
Authors:T R Butt  E Sternberg  J Herd  S T Crooke
Affiliation:Department of Molecular Pharmacology, Smith Kline and French Laboratories, 1500 Spring Garden Street, Philadelphia, PA 19101 U.S.A. Tel. (215) 278-4915
Abstract:The induction of a copper-binding metallothionein (Cu-MT) was studied in yeast, Saccharomyces cerevisiae, and a relationship between copper resistance and intracellular levels of Cu-MT in these eukaryotes was established. Poly(A)-containing RNA from a copper-resistant (Cur) yeast strain, which synthesized abundant quantities of Cu-MT and in which Cu-MT gene transcription was enhanced 50-fold upon exposure to CuSO4, was used to screen yeast genomic DNA clones. Restriction analysis revealed common XbaI and KpnI sites in five genomic clones isolated. The transcription of these clones was regulated by copper. Transformation of a copper-sensitive (Cus) yeast strain by one of these clones confers copper resistance in yeast. The results suggest that the expression of the Cu-MT gene is, in part, responsible for mediating copper resistance in yeast.
Keywords:copper resistance  copper-binding protein  bp  base pair  CHO  Chinese hamster ovary  Cu-MT  copper metallothionein  copper-sensitive  copper-resistant  DEP  diethylpyrocarbonate  DTT  dithiothreitol  EtBr  ethidium bromide  MOPS  morpholinepropanesulfonic acid  MT  metallothionein  PMSF  phenylmethylsulfonyl fluoride  SDS  sodium dodecyl sulfate  YEPD  1% yeast extract, 2% Bacto-peptone and 2% dextrose
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