Winge D R, Nielson K B, Gray W R, Hamer D H
J Biol Chem. 1985 Nov 25;260(27):14464-70.
The protein product of the CUP1 locus in Cu-resistant Saccharomyces cerevisiae has been purified and characterized. The protein was found to lack the first 8 amino acids predicted by the nucleotide sequence of the gene. The residues removed from the amino-terminal region include 5 hydrophobic residues, two of which are aromatic. The unique amino terminus starting at Gln9 of the putative DNA translation product was observed for metallothionein purified in the presence of various protease inhibitors or from a pep4 mutant yeast strain deficient in vacuolar proteases. The remainder of the primary structure of the protein is equivalent to the decoded DNA sequence, so yeast metallothionein is a 53-residue polypeptide of molecular weight 5655. The isolated protein contained 8 copper ions ligated by 12 cysteines/molecule. Reconstitution studies of the apo-molecule revealed that 8 mol eq of Cu(I) conferred maximal stability against proteolysis and depleted the zinc content of zinc-saturated metallothionein. These assays suggested that the protein has 8 binding sites for Cu(I). Ag(I) ions bound to the protein with the same stoichiometry. Yeast metallothionein was also observed to coordinate Cd(II) and Zn(II) ions in vitro. In studies of direct binding, protection against proteolysis, and metal ion exchange, these divalent ions were found to associate with the protein with a maximal stoichiometry of 4 ions/molecule. Yeast metallothionein thus exhibits two distinct binding configurations for Cu(I) and Cd(II) as does the mammalian protein.
已对耐铜酿酒酵母中CUP1基因座的蛋白质产物进行了纯化和表征。发现该蛋白质缺少基因核苷酸序列预测的前8个氨基酸。从氨基末端区域去除的残基包括5个疏水残基,其中两个是芳香族残基。在存在各种蛋白酶抑制剂的情况下纯化的金属硫蛋白,或从缺乏液泡蛋白酶的pep4突变酵母菌株中纯化的金属硫蛋白,均观察到从假定的DNA翻译产物的Gln9开始的独特氨基末端。该蛋白质一级结构的其余部分与解码的DNA序列相同,因此酵母金属硫蛋白是一种分子量为5655的53个残基的多肽。分离出的蛋白质含有由12个半胱氨酸/分子连接的8个铜离子。对脱辅基分子的重组研究表明,8摩尔当量的Cu(I)赋予了对蛋白水解的最大稳定性,并耗尽了锌饱和金属硫蛋白中的锌含量。这些分析表明该蛋白质具有8个Cu(I)结合位点。Ag(I)离子以相同的化学计量比与该蛋白质结合。还观察到酵母金属硫蛋白在体外能配位Cd(II)和Zn(II)离子。在直接结合、抗蛋白水解保护和金属离子交换的研究中,发现这些二价离子与该蛋白质结合的最大化学计量比为4个离子/分子。因此,酵母金属硫蛋白与哺乳动物蛋白质一样,对Cu(I)和Cd(II)表现出两种不同的结合构型。