Mathias N, Steussy C N, Goebl M G
Department of Biochemistry and Molecular Biology, Indiana University School of Medicine and the Walther Oncology Center, Indianapolis, Indiana, 46202-5122, USA.
J Biol Chem. 1998 Feb 13;273(7):4040-5. doi: 10.1074/jbc.273.7.4040.
The CDC34 gene of the yeast Saccharomyces cerevisiae encodes a ubiquitin-conjugating protein that transfers ubiquitin onto substrates to signal rapid degradation via the proteasome. Cdc34p has been implicated in signaling the destruction of a variety of substrates including the cyclin-dependent kinase inhibitor, Sic1p, which must be degraded for cells to enter S-phase. Mutants lacking CDC34 activity fail to degrade Sic1p and fail to enter S-phase, a phenotype that is also shared with cells lacking CDC4 and CDC53 activity. Here we demonstrate that Cdc4p, Cdc34p, and Cdc53p interact in vivo. We have mapped a Cdc4p/Cdc53p-binding region on Cdc34p; this region is essential for S-phase entry and thus the association of these three proteins is required for Sic1p degradation. All three proteins migrate in gel filtration to sizes that greatly exceed their actual size suggesting that they form stable associations with other proteins and we observe Cdc4p, Cdc34p, and Cdc53p fractionating into overlapping families of high molecular weight complexes. Finally, we demonstrate that Cdc4p, Cdc34p, and Cdc53p are stable throughout the cell cycle and that Cdc34p permanently resides as part of a complex throughout the cell cycle. This suggests that all Cdc34p substrates are ubiquitinated by a similar high molecular weight complex.
酿酒酵母的CDC34基因编码一种泛素结合蛋白,该蛋白将泛素转移到底物上,以标记其通过蛋白酶体进行快速降解。Cdc34p参与多种底物的降解信号传递,包括细胞周期蛋白依赖性激酶抑制剂Sic1p,细胞进入S期前Sic1p必须被降解。缺乏CDC34活性的突变体无法降解Sic1p,也无法进入S期,缺乏CDC4和CDC53活性的细胞也有这种表型。在此我们证明Cdc4p、Cdc34p和Cdc53p在体内相互作用。我们已在Cdc34p上定位了一个Cdc4p/Cdc53p结合区域;该区域对于进入S期至关重要,因此这三种蛋白质的结合是Sic1p降解所必需的。这三种蛋白质在凝胶过滤中的迁移大小大大超过其实际大小,表明它们与其他蛋白质形成稳定的结合,并且我们观察到Cdc4p、Cdc34p和Cdc53p分离到重叠的高分子量复合物家族中。最后,我们证明Cdc4p、Cdc34p和Cdc53p在整个细胞周期中都是稳定的,并且Cdc34p在整个细胞周期中一直作为复合物的一部分存在。这表明所有Cdc34p底物都是由类似的高分子量复合物进行泛素化的。