Cooper K F, Strich R
Institute for Cancer Research, Fox Chase Cancer Center, Philadelphia, PA 19111, USA.
Gene Expr. 1999;8(1):43-57.
The yeast C-type cyclin Ume3p/Srb11p and its cyclin-dependent kinase (Cdk) Ume5p are required for the full repression of genes involved in the stress response or meiosis. This cyclin-Cdk kinase copurifies with the RNA polymerase II holoenzyme complex, suggesting it functions through modification of the transcriptional machinery. This report describes two domains required for Ume3p-RNA Pol II holoenzyme association. One domain contains the highly conserved cyclin box that directs cyclin-Cdk interaction and requires Ume5p for holoenzyme binding. The second domain, termed HAD for holoenzyme associating domain, is located within the amino-terminal region of the cyclin and is sufficient for holoenzyme binding independent of Ume5p or the cyclin box. In addition to its role in RNA Pol II holoenzyme association, the HAD is also required for Ume3p-dependent repression in vivo. Finally, HAD mutations do not affect the ability of the Ume3p-Ume5p kinase to phosphorylate in vitro the carboxy-terminal domain (CTD) of RNA polymerase II, a reported target of cyclin C-Cdk activity. In conclusion, this study demonstrates that the association of the Ume3p to the holoenzyme is complex, involving two independent domains, both of which are required for full Ume3p-dependent repression in vivo. Furthermore, HAD-dependent repression does not appear to involve CTD phosphorylation, suggesting a different role for this domain in directing Ume3p-Ume5p activity.
酵母C型细胞周期蛋白Ume3p/Srb11p及其细胞周期蛋白依赖性激酶(Cdk)Ume5p是完全抑制参与应激反应或减数分裂的基因所必需的。这种细胞周期蛋白-Cdk激酶与RNA聚合酶II全酶复合物共同纯化,表明它通过修饰转录机制发挥作用。本报告描述了Ume3p与RNA聚合酶II全酶结合所需的两个结构域。一个结构域包含高度保守的细胞周期蛋白框,该框指导细胞周期蛋白-Cdk相互作用,并且全酶结合需要Ume5p。第二个结构域称为全酶结合结构域(HAD),位于细胞周期蛋白的氨基末端区域,足以独立于Ume5p或细胞周期蛋白框进行全酶结合。除了在RNA聚合酶II全酶结合中的作用外,HAD在体内Ume3p依赖性抑制中也是必需的。最后,HAD突变不影响Ume3p-Ume5p激酶在体外磷酸化RNA聚合酶II羧基末端结构域(CTD)的能力(CTD是细胞周期蛋白C-Cdk活性的一个报道靶点)。总之,本研究表明Ume3p与全酶的结合是复杂的,涉及两个独立的结构域,这两个结构域在体内完全Ume3p依赖性抑制中都是必需的。此外,HAD依赖性抑制似乎不涉及CTD磷酸化,这表明该结构域在指导Ume3p-Ume5p活性方面具有不同的作用。