Wimuttisuk Wananit, Singer Jeffrey D
Department of Molecular Biology, Cell Biology and Biochemistry, Center for Genomics and Proteomics, Brown University, Providence, RI 02903, USA.
Mol Biol Cell. 2007 Mar;18(3):899-909. doi: 10.1091/mbc.e06-06-0542. Epub 2006 Dec 27.
Cullins are members of a family of scaffold proteins that assemble multisubunit ubiquitin ligase complexes to confer substrate specificity for the ubiquitination pathway. Cullin3 (Cul3) forms a catalytically inactive BTB-Cul3-Rbx1 (BCR) ubiquitin ligase, which becomes functional upon covalent attachment of the ubiquitin homologue neural-precursor-cell-expressed and developmentally down regulated 8 (Nedd8) near the C terminus of Cul3. Current models suggest that Nedd8 activates cullin complexes by providing a recognition site for a ubiquitin-conjugating enzyme. Based on the following evidence, we propose that Nedd8 activates the BCR ubiquitin ligase by mediating the dimerization of Cul3. First, Cul3 is found as a neddylated heterodimer bound to a BTB domain-containing protein in vivo. Second, the formation of a Cul3 heterodimer is mediated by a Nedd8 molecule, which covalently attaches itself to one Cul3 molecule and binds to the winged-helix B domain at the C terminus of the second Cul3 molecule. Third, complementation experiments revealed that coexpression of two distinct nonfunctional Cul3 mutants can rescue the ubiquitin ligase function of the BCR complex. Likewise, a substrate of the BCR complex binds heterodimeric Cul3, suggesting that the Cul3 complex is active as a dimer. These findings not only provide insight into the architecture of the active BCR complex but also suggest assembly as a regulatory mechanism for activation of all cullin-based ubiquitin ligases.
Cullins是支架蛋白家族的成员,它们组装多亚基泛素连接酶复合物,为泛素化途径赋予底物特异性。Cullin3(Cul3)形成一种无催化活性的BTB-Cul3-Rbx1(BCR)泛素连接酶,在Cul3的C末端附近共价连接泛素同源物神经前体细胞表达且发育下调8(Nedd8)后,该酶变得有功能。目前的模型表明,Nedd8通过为泛素结合酶提供识别位点来激活cullin复合物。基于以下证据,我们提出Nedd8通过介导Cul3的二聚化来激活BCR泛素连接酶。首先,在体内发现Cul3是一种与含BTB结构域的蛋白质结合的经Nedd8修饰的异二聚体。其次,Cul3异二聚体的形成由一个Nedd8分子介导,该分子共价连接到一个Cul3分子上,并与第二个Cul3分子C末端的翼状螺旋B结构域结合。第三,互补实验表明,两种不同的无功能Cul3突变体的共表达可以挽救BCR复合物的泛素连接酶功能。同样,BCR复合物的一个底物结合异二聚体Cul3,这表明Cul3复合物作为二聚体是有活性的。这些发现不仅为活性BCR复合物的结构提供了见解,还表明组装是激活所有基于cullin的泛素连接酶的一种调节机制。