Butt T R, Khan M I, Marsh J, Ecker D J, Crooke S T
Department of Molecular Pharmacology, Smith Kline & French Laboratories, King of Prussia, Pennsylvania 19406-0939.
J Biol Chem. 1988 Nov 5;263(31):16364-71.
We have established a Saccharomyces cerevisiae genetic system that expresses the fusion protein ubiquitin-metallothionein. We have evaluated the effects of amino-terminal ubiquitination of metallothionein on the stability and function of metallothionein. The fusion protein of wild type ubiquitin and metallothionein was rapidly processed in vivo to release free ubiquitin and metallothionein. Site-directed mutants of ubiquitin-metallothionein expressed in yeast were used to study the specificity of the (alpha-NH2-ubiquitin) protein endopeptidases. The data suggest that amino-terminal ubiquitination is not a signal for the proteolysis of yeast metallothionein in yeast. We have also discovered that expression of selected ubiquitin mutants blocked the growth of yeast. The data suggest that in addition to its function as a proteolytic signal, ubiquitination of proteins plays multiple roles in the cell.
我们建立了一个表达融合蛋白泛素 - 金属硫蛋白的酿酒酵母遗传系统。我们评估了金属硫蛋白氨基末端泛素化对金属硫蛋白稳定性和功能的影响。野生型泛素和金属硫蛋白的融合蛋白在体内迅速被加工,释放出游离的泛素和金属硫蛋白。在酵母中表达的泛素 - 金属硫蛋白的定点突变体用于研究(α - NH2 - 泛素)蛋白内肽酶的特异性。数据表明,氨基末端泛素化不是酵母中酵母金属硫蛋白蛋白水解的信号。我们还发现,所选泛素突变体的表达会阻碍酵母的生长。数据表明,蛋白质的泛素化除了作为蛋白水解信号的功能外,在细胞中还发挥多种作用。