Leggett D S, Candido P M
Department of Biochemistry and Molecular Biology, University of British Columbia, 2146 Health Sciences Mall, Vancouver, Canada, V6T 1Z3.
Biochem J. 1997 Oct 15;327 ( Pt 2)(Pt 2):357-61. doi: 10.1042/bj3270357.
The Caenorhabditis elegans ubiquitin-conjugating enzyme UBC-1 is distinct from other RAD6 homologues in possessing a C-terminal tail 40 amino acid residues long [Leggett, Jones and Candido (1995) DNA Cell Biol. 14, 883-891]. Such extensions from the core catalytic domain have been found in a subset of known conjugating enzymes, where they have been shown to have diverse roles including target recognition, membrane attachment and sporulation. In the present study we used mutagenesis in vitro to examine the role of the tail in specific aspects of UBC-1 structure and activity. Cross-linking experiments with purified recombinant UBC-1 reveal that it forms dimers and probably tetramers. The acidic tail of UBC-1 has an important role in this interaction because deletions of the tail significantly decrease, but do not abolish, this self-association. Ubiquitin conjugation assays show that, in addition to accepting a thiol-bound ubiquitin at its active site, UBC-1 is stably mono-ubiquitinated. Deletion analysis and site-directed mutagenesis localize the site of ubiquitination to Lys-162 in the tail. These findings demonstrate that the C-terminal tail of UBC-1 is important both for its quaternary structure and post-translational modification in vitro.
秀丽隐杆线虫泛素结合酶UBC - 1与其他RAD6同源物不同,它拥有一个40个氨基酸残基长的C末端尾巴[莱格特、琼斯和坎迪多(1995年),《DNA与细胞生物学》14卷,883 - 891页]。在已知的结合酶子集中发现了这种从核心催化结构域延伸出来的结构,已证明它们具有多种作用,包括靶标识别、膜附着和孢子形成。在本研究中,我们使用体外诱变来研究尾巴在UBC - 1结构和活性特定方面的作用。用纯化的重组UBC - 1进行交联实验表明它形成二聚体,可能还有四聚体。UBC - 1的酸性尾巴在这种相互作用中起重要作用,因为尾巴的缺失会显著降低但不会消除这种自我缔合。泛素结合测定表明,除了在其活性位点接受硫醇结合的泛素外,UBC - 1还能被稳定地单泛素化。缺失分析和定点诱变将泛素化位点定位到尾巴中的赖氨酸 - 162。这些发现表明,UBC - 1的C末端尾巴在体外对其四级结构和翻译后修饰都很重要。