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来自哺乳动物细胞周期突变体ts85的泛素激活酶的热稳定性

Thermolability of ubiquitin-activating enzyme from the mammalian cell cycle mutant ts85.

作者信息

Finley D, Ciechanover A, Varshavsky A

出版信息

Cell. 1984 May;37(1):43-55. doi: 10.1016/0092-8674(84)90299-x.

Abstract

Ubiquitin, a 76 residue protein, occurs in eucaryotic cells either free or covalently joined to a variety of protein species. Previous work suggested that ubiquitin may function as a signal for attack by proteinases specific for ubiquitin-protein conjugates. We show that the mouse cell line ts85 , a previously isolated cell cycle mutant, is temperature-sensitive in ubiquitin-protein conjugation, and that this effect is due to the specific thermolability of the ts85 ubiquitin-activating enzyme (E1). From E1 thermoinactivation kinetics in mixed (wild-type plus ts85 ) extracts, and from copurification of the determinant of E1 thermolability with E1 in ubiquitin-affinity chromatography, we conclude that the determinant of E1 thermolability is contained within the E1 polypeptide. ts85 cells fail to degrade otherwise short-lived intracellular proteins at the nonpermissive temperature (accompanying paper), demonstrating that degradation of the bulk of short-lived proteins in this higher eucaryotic cell proceeds through a ubiquitin-dependent pathway. We discuss possible roles of ubiquitin-dependent pathways in DNA transactions, the cell cycle, and the heat shock response.

摘要

泛素是一种由76个氨基酸残基组成的蛋白质,存在于真核细胞中,以游离形式或与多种蛋白质共价结合的形式存在。先前的研究表明,泛素可能作为一种信号,促使针对泛素-蛋白质复合物的蛋白酶对其进行攻击。我们发现,小鼠细胞系ts85(一种先前分离出的细胞周期突变体)在泛素-蛋白质结合方面对温度敏感,并且这种效应是由于ts85泛素激活酶(E1)具有特定的热不稳定性。通过混合(野生型加ts85)提取物中E1的热失活动力学,以及在泛素亲和色谱中E1热不稳定性决定因素与E1的共纯化,我们得出结论,E1热不稳定性决定因素包含在E1多肽内。ts85细胞在非允许温度下无法降解原本寿命较短的细胞内蛋白质(随附论文),这表明在这种高等真核细胞中,大部分寿命较短蛋白质的降解是通过泛素依赖性途径进行的。我们讨论了泛素依赖性途径在DNA交易、细胞周期和热休克反应中的可能作用。

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