Parker Joanne L, Bielen Aleksandra B, Dikic Ivan, Ulrich Helle D
Cancer Research UK, London Research Institute, Clare Hall Laboratories, Blanche Lane, South Mimms, EN6 3LD, United Kingdom.
Nucleic Acids Res. 2007;35(3):881-9. doi: 10.1093/nar/gkl1102. Epub 2007 Jan 23.
Bypassing of DNA lesions by damage-tolerant DNA polymerases depends on the interaction of these enzymes with the monoubiquitylated form of the replicative clamp protein, PCNA. We have analyzed the contributions of ubiquitin and PCNA binding to damage bypass and damage-induced mutagenesis in Polymerase eta (encoded by RAD30) from the budding yeast Saccharomyces cerevisiae. We report here that a ubiquitin-binding domain provides enhanced affinity for the ubiquitylated form of PCNA and is essential for in vivo function of the polymerase, but only in conjunction with a basal affinity for the unmodified clamp, mediated by a conserved PCNA interaction motif. We show that enhancement of the interaction and function in damage tolerance does not depend on the ubiquitin attachment site within PCNA. Like its mammalian homolog, budding yeast Polymerase eta itself is ubiquitylated in a manner dependent on its ubiquitin-binding domain.
耐损伤DNA聚合酶对DNA损伤的绕过依赖于这些酶与复制性钳蛋白PCNA的单泛素化形式之间的相互作用。我们分析了泛素和PCNA结合对来自芽殖酵母酿酒酵母的聚合酶η(由RAD30编码)的损伤绕过和损伤诱导诱变的贡献。我们在此报告,一个泛素结合结构域对PCNA的泛素化形式具有增强的亲和力,并且对于该聚合酶的体内功能至关重要,但仅与由保守的PCNA相互作用基序介导的对未修饰钳的基础亲和力相结合时才如此。我们表明,损伤耐受性中相互作用和功能的增强不依赖于PCNA内的泛素附着位点。与其哺乳动物同源物一样,芽殖酵母聚合酶η自身以依赖于其泛素结合结构域的方式被泛素化。