French Michael E, Klosowiak Julian L, Aslanian Aaron, Reed Steven I, Yates John R, Hunter Tony
From the Molecular and Cell Biology Laboratory, Salk Institute for Biological Studies, La Jolla, California 92037.
the Departments of Cell and Molecular Biology and.
J Biol Chem. 2017 Jun 23;292(25):10398-10413. doi: 10.1074/jbc.M117.789479. Epub 2017 May 1.
omologous to 6AP -erminal (HECT) ubiquitin (Ub) ligases (E3s) are a large class of enzymes that bind to their substrates and catalyze ubiquitination through the formation of a Ub thioester intermediate. The mechanisms by which these E3s assemble polyubiquitin chains on their substrates remain poorly defined. We report here that the Nedd4 family HECT E3, WWP1, assembles substrate-linked Ub chains containing Lys-63, Lys-48, and Lys-11 linkages (Lys-63 > Lys-48 > Lys-11). Our results demonstrate that WWP1 catalyzes the formation of Ub chains through a sequential addition mechanism, in which Ub monomers are transferred in a successive fashion to the substrate, and that ubiquitination by WWP1 requires the presence of a low-affinity, noncovalent Ub-binding site within the HECT domain. Unexpectedly, we find that the formation of Ub chains by WWP1 occurs in two distinct phases. In the first phase, chains are synthesized in a unidirectional manner and are linked exclusively through Lys-63 of Ub. In the second phase, chains are elongated in a multidirectional fashion characterized by the formation of mixed Ub linkages and branched structures. Our results provide new insight into the mechanism of Ub chain formation employed by Nedd4 family HECT E3s and suggest a framework for understanding how this family of E3s generates Ub signals that function in proteasome-independent and proteasome-dependent pathways.
与6AP-末端(HECT)泛素(Ub)连接酶(E3)同源的酶是一大类能够结合其底物并通过形成Ub硫酯中间体催化泛素化的酶。这些E3在其底物上组装多聚泛素链的机制仍不清楚。我们在此报告,Nedd4家族的HECT E3,WWP1,组装包含Lys-63、Lys-48和Lys-11连接(Lys-63>Lys-48>Lys-11)的底物连接的Ub链。我们的结果表明,WWP1通过顺序添加机制催化Ub链的形成,其中Ub单体以连续方式转移到底物上,并且WWP1介导的泛素化需要HECT结构域内存在低亲和力、非共价的Ub结合位点。出乎意料的是,我们发现WWP1介导的Ub链形成分两个不同阶段发生。在第一阶段,链以单向方式合成,并且仅通过Ub的Lys-63连接。在第二阶段,链以多向方式延长,其特征是形成混合Ub连接和分支结构。我们的结果为Nedd4家族HECT E3s所采用的Ub链形成机制提供了新的见解,并为理解该E3家族如何产生在蛋白酶体非依赖性和蛋白酶体依赖性途径中起作用的Ub信号提供了一个框架。