Hofmann R M, Pickart C M
Department of Biochemistry, School of Public Health, Johns Hopkins University, Baltimore, Maryland 21205, USA.
Cell. 1999 Mar 5;96(5):645-53. doi: 10.1016/s0092-8674(00)80575-9.
Ubiquitin-conjugating enzyme variant (UEV) proteins resemble ubiquitin-conjugating enzymes (E2s) but lack the defining E2 active-site residue. The MMS2-encoded UEV protein has been genetically implicated in error-free postreplicative DNA repair in Saccharomyces cerevisiae. We show that Mms2p forms a specific heteromeric complex with the UBC13-encoded E2 and is required for the Ubc13p-dependent assembly of polyubiquitin chains linked through lysine 63. A ubc13 yeast strain is UV sensitive, and single, double, and triple mutants of the UBC13, MMS2, and ubiquitin (ubiK63R) genes display a comparable phenotype. These findings support a model in which an Mms2p/Ubc13p complex assembles novel polyubiquitin chains for signaling in DNA repair, and they suggest that UEV proteins may act to increase diversity and selectivity in ubiquitin conjugation.
泛素缀合酶变体(UEV)蛋白类似于泛素缀合酶(E2),但缺乏E2活性位点的关键残基。MMS2编码的UEV蛋白在酿酒酵母的无差错复制后DNA修复中具有遗传学意义。我们发现,Mms2p与UBC13编码的E2形成一种特定的异源复合物,并且是通过赖氨酸63连接的多聚泛素链的Ubc13p依赖性组装所必需的。ubc13酵母菌株对紫外线敏感,UBC13、MMS2和泛素(ubiK63R)基因的单突变体、双突变体和三突变体表现出类似的表型。这些发现支持了一种模型,即Mms2p/Ubc13p复合物组装新的多聚泛素链用于DNA修复中的信号传导,并且表明UEV蛋白可能在泛素缀合中增加多样性和选择性。