Wang G, Yang J, Huibregtse J M
Department of Molecular Biology and Biochemistry, Rutgers University, Piscataway, New Jersey 08855-1059, USA.
Mol Cell Biol. 1999 Jan;19(1):342-52. doi: 10.1128/MCB.19.1.342.
RSP5, an essential gene of Saccharomyces cerevisiae, encodes a hect domain E3 ubiquitin-protein ligase. Hect E3 proteins have been proposed to consist of two broad functional domains: a conserved catalytic carboxyl-terminal domain of approximately 350 amino acids (the hect domain) and a large, nonconserved amino-terminal domain containing determinants of substrate specificity. We report here the mapping of the minimal region of Rsp5 necessary for its essential in vivo function, the minimal region necessary to stably interact with a substrate of Rsp5 (Rpb1, the large subunit of RNA polymerase II), and the finding that the hect domain, by itself, is sufficient for formation of the ubiquitin-thioester intermediate. Mutations within the hect domain that affect either the ability to form a ubiquitin-thioester or to catalyze substrate ubiquitination abrogate in vivo function, strongly suggesting that the ubiquitin-protein ligase activity of Rsp5 is intrinsically linked to its essential function. The amino-terminal region of Rsp5 contains three WW domains and a C2 calcium-binding domain. Two of the three WW domains are required for the essential in vivo function, while the C2 domain is not, and requirements for Rpb1 binding and ubiquitination lie within the region required for in vivo function. Together, these results support the two-domain model for hect E3 function and indicate that the WW domains play a role in the recognition of at least some of the substrates of Rsp5, including those related to its essential function. In addition, we show that haploid yeast strains bearing complete disruptions of either of two other hect E3 genes of yeast, designated HUL4 (YJR036C) and HUL5 (YGL141W), are viable.
RSP5是酿酒酵母的一个必需基因,编码一种含Hect结构域的E3泛素蛋白连接酶。Hect E3蛋白被认为由两个广泛的功能结构域组成:一个约350个氨基酸的保守催化羧基末端结构域(Hect结构域)和一个包含底物特异性决定因素的大的、非保守氨基末端结构域。我们在此报告了RSP5在体内发挥必需功能所需的最小区域的定位,与RSP5的底物(Rpb1,RNA聚合酶II的大亚基)稳定相互作用所需的最小区域,以及发现Hect结构域本身足以形成泛素硫酯中间体。Hect结构域内影响形成泛素硫酯或催化底物泛素化能力的突变会消除体内功能,强烈表明RSP5的泛素蛋白连接酶活性与其必需功能内在相关。RSP5的氨基末端区域包含三个WW结构域和一个C2钙结合结构域。三个WW结构域中的两个是体内必需功能所必需的,而C2结构域则不是,并且与Rpb1结合和泛素化的要求位于体内功能所需的区域内。总之,这些结果支持了Hect E3功能的双结构域模型,并表明WW结构域在识别RSP5的至少一些底物中发挥作用,包括那些与其必需功能相关的底物。此外,我们表明,携带酵母另外两个Hect E3基因(分别命名为HUL4(YJR036C)和HUL5(YGL141W))完全缺失的单倍体酵母菌株是可行的。