Butt T R, Sternberg E, Herd J, Crooke S T
Gene. 1984 Jan;27(1):23-33. doi: 10.1016/0378-1119(84)90235-x.
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.
在酿酒酵母中研究了铜结合金属硫蛋白(Cu-MT)的诱导情况,并确定了这些真核生物中铜抗性与细胞内Cu-MT水平之间的关系。从抗铜(Cur)酵母菌株中提取的含poly(A)的RNA用于筛选酵母基因组DNA克隆,该菌株能合成大量的Cu-MT,且在暴露于CuSO4时Cu-MT基因转录增强了50倍。限制性分析显示,在分离出的五个基因组克隆中存在共同的XbaI和KpnI位点。这些克隆的转录受铜调控。用其中一个克隆转化铜敏感(Cus)酵母菌株可赋予酵母铜抗性。结果表明,Cu-MT基因的表达部分负责介导酵母中的铜抗性。