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E2 缀合酶利用一种新型共价中间体对泛素进行操控。

Ubiquitin manipulation by an E2 conjugating enzyme using a novel covalent intermediate.

作者信息

Merkley Nadine, Barber Kathryn R, Shaw Gary S

机构信息

Department of Biochemistry, The University of Western Ontario, London, Ontario N6A 5C1, Canada.

出版信息

J Biol Chem. 2005 Sep 9;280(36):31732-8. doi: 10.1074/jbc.M505205200. Epub 2005 Jul 12.

DOI:10.1074/jbc.M505205200
PMID:16014632
Abstract

Degradation of misfolded and damaged proteins by the 26 S proteasome requires the substrate to be tagged with a polyubiquitin chain. Assembly of polyubiquitin chains and subsequent substrate labeling potentially involves three enzymes, an E1, E2, and E3. E2 proteins are key enzymes and form a thioester intermediate through their catalytic cysteine with the C-terminal glycine (Gly76) of ubiquitin. This thioester intermediate is easily hydrolyzed in vitro and has eluded structural characterization. To overcome this, we have engineered a novel ubiquitin-E2 disulfide-linked complex by mutating Gly76 to Cys76 in ubiquitin. Reaction of Ubc1, an E2 from Saccharomyces cerevisiae, with this mutant ubiquitin resulted in an ubiquitin-E2 disulfide that could be purified and was stable for several weeks. Chemical shift perturbation analysis of the disulfide ubiquitin-Ubc1 complex by NMR spectroscopy reveals an ubiquitin-Ubc1 interface similar to that for the ubiquitin-E2 thioester. In addition to the typical E2 catalytic domain, Ubc1 contains an ubiquitin-associated (UBA) domain, and we have utilized NMR spectroscopy to demonstrate that in this disulfide complex the UBA domain is freely accessible to non-covalently bind a second molecule of ubiquitin. The ability of the Ubc1 to bind two ubiquitin molecules suggests that the UBA domain does not interact with the thioester-bound ubiquitin during polyubiquitin chain formation. Thus, construction of this novel ubiquitin-E2 disulfide provides a method to characterize structurally the first step in polyubiquitin chain assembly by Ubc1 and its related class II enzymes.

摘要

26S蛋白酶体对错误折叠和受损蛋白质的降解需要底物被多聚泛素链标记。多聚泛素链的组装以及随后的底物标记可能涉及三种酶,即E1、E2和E3。E2蛋白是关键酶,通过其催化性半胱氨酸与泛素的C末端甘氨酸(Gly76)形成硫酯中间体。这种硫酯中间体在体外容易水解,并且尚未得到结构表征。为了克服这一问题,我们通过将泛素中的Gly76突变为Cys76,构建了一种新型的泛素-E2二硫键连接复合物。酿酒酵母的E2 Ubc1与这种突变泛素反应,产生了一种可以纯化且能稳定存在数周的泛素-E2二硫键。通过核磁共振光谱对二硫键泛素-Ubc1复合物进行化学位移扰动分析,揭示了一个与泛素-E2硫酯类似的泛素-Ubc1界面。除了典型的E2催化结构域,Ubc1还包含一个泛素相关(UBA)结构域,我们利用核磁共振光谱证明,在这种二硫键复合物中,UBA结构域可自由地非共价结合第二个泛素分子。Ubc1结合两个泛素分子的能力表明,在多聚泛素链形成过程中,UBA结构域不与硫酯结合的泛素相互作用。因此,这种新型泛素-E2二硫键的构建提供了一种在结构上表征Ubc1及其相关II类酶进行多聚泛素链组装第一步的方法。

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