Eddins Michael J, Carlile Candice M, Gomez Kamila M, Pickart Cecile M, Wolberger Cynthia
Department of Biophysics and Biophysical Chemistry and the Howard Hughes Medical Institute, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
Nat Struct Mol Biol. 2006 Oct;13(10):915-20. doi: 10.1038/nsmb1148. Epub 2006 Sep 17.
Lys63-linked polyubiquitin chains participate in nonproteolytic signaling pathways, including regulation of DNA damage tolerance and NF-kappaB activation. E2 enzymes bound to ubiquitin E2 variants (UEV) are vital in these pathways, synthesizing Lys63-linked polyubiquitin chains, but how these complexes achieve specificity for a particular lysine linkage has been unclear. We have determined the crystal structure of an Mms2-Ubc13-ubiquitin (UEV-E2-Ub) covalent intermediate with donor ubiquitin linked to the active site residue of Ubc13. In the structure, the unexpected binding of a donor ubiquitin of one Mms2-Ubc13-Ub complex to the acceptor-binding site of Mms2-Ubc13 in an adjacent complex allows us to visualize at atomic resolution the molecular determinants of acceptor-ubiquitin binding. The structure reveals the key role of Mms2 in allowing selective insertion of Lys63 into the Ubc13 active site and suggests a molecular model for polyubiquitin chain elongation.
赖氨酸63连接的多聚泛素链参与非蛋白水解信号通路,包括DNA损伤耐受性调节和核因子κB激活。与泛素E2变体(UEV)结合的E2酶在这些通路中至关重要,负责合成赖氨酸63连接的多聚泛素链,但这些复合物如何实现对特定赖氨酸连接的特异性尚不清楚。我们已经确定了一种Mms2-Ubc13-泛素(UEV-E2-Ub)共价中间体的晶体结构,其中供体泛素与Ubc13的活性位点残基相连。在该结构中,一个Mms2-Ubc13-Ub复合物的供体泛素意外地结合到相邻复合物中Mms2-Ubc13的受体结合位点,这使我们能够在原子分辨率下观察受体泛素结合的分子决定因素。该结构揭示了Mms2在允许将赖氨酸63选择性插入Ubc13活性位点中的关键作用,并提出了多聚泛素链延伸的分子模型。