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Biochemical characterization of Caenorhabditis elegans UBC-1: self-association and auto-ubiquitination of a RAD6-like ubiquitin-conjugating enzyme in vitro

机译:秀丽隐杆线虫UBC-1的生化特征:RAD6样泛素结合酶的自缔合和自身泛素化。

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pThe iCaenorhabditis elegans/i 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. b14/b, 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 iin iv/iitro/i 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 iin iv/iitro./i/p
机译:>秀丽隐杆线虫泛素结合酶UBC-1与其他RAD6同源物的不同之处在于其C端尾巴长40个氨基酸残基[Leggett,Jones和Candido(1995)DNA Cell Biol 。 14 ,883-891]。从核心催化结构域的此类延伸已在已知的缀合酶的子集中发现,其中已显示它们具有多种作用,包括靶标识别,膜附着和孢子形成。在本研究中,我们使用诱变在 v itro 中检查了尾巴在UBC-1结构和活性的特定方面的作用。用纯化的重组UBC-1进行的交联实验表明,它形成二聚体甚至四聚体。 UBC-1的酸性尾巴在这种相互作用中起着重要的作用,因为尾巴的缺失会大大减少但不会消除这种自缔合。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也被稳定地单泛素化。缺失分析和定点诱变将泛素化位点定位在尾巴中的Lys-162。这些发现表明,UBC-1的C末端尾部对于其四价结构和 v tro 中的翻译后修饰均很重要。

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