Butt T R, Sternberg E J, Gorman J A, Clark P, Hamer D, Rosenberg M, Crooke S T
Proc Natl Acad Sci U S A. 1984 Jun;81(11):3332-6. doi: 10.1073/pnas.81.11.3332.
Addition of copper to yeast cells leads to the induction of a low molecular weight, cysteine-rich protein that binds copper. This protein, termed copper chelatin or thionein, is related to the metallothionein family of proteins that are induced in response to cadmium and zinc in vertebrate cells. We have determined the structure of the yeast copper-binding protein by DNA sequence analysis of the gene. Although the 6573-dalton yeast protein is substantially divergent from vertebrate metallothioneins, the arrangement of 12 cysteine residues, which is a hallmark of metal-binding proteins, is partially conserved. We analyzed the regulatory DNA sequence of the gene by fusing it with the Escherichia coli galactokinase gene and assaying the levels of enzyme activity in yeast in response to copper. The transcriptional activation has a specific requirement for copper. Zinc, cadmium, and gold were unable to regulate the galactokinase activity. The yeast copper metallothionein regulatory sequences represent a previously unreported class of yeast promoter that is regulated by copper.
向酵母细胞中添加铜会导致一种结合铜的低分子量、富含半胱氨酸的蛋白质的诱导合成。这种蛋白质,被称为铜螯合蛋白或硫蛋白,与脊椎动物细胞中响应镉和锌而诱导产生的金属硫蛋白家族蛋白质相关。我们通过对该基因进行DNA序列分析确定了酵母铜结合蛋白的结构。尽管6573道尔顿的酵母蛋白与脊椎动物金属硫蛋白有很大差异,但作为金属结合蛋白标志的12个半胱氨酸残基的排列部分保守。我们通过将该基因与大肠杆菌半乳糖激酶基因融合,并检测酵母中酶活性水平对铜的响应,来分析该基因的调控DNA序列。转录激活对铜有特定需求。锌、镉和金无法调节半乳糖激酶活性。酵母铜金属硫蛋白调控序列代表了一类以前未报道的受铜调控的酵母启动子。