McAlpine Jeffery M R B, Zhu Jingyi, Pudjihartono Nicholas, Teyra Joan, Currie Michael J, Tillett Zachary D, Dobson Renwick C J, Sidhu Sachdev S, Day Catherine L, Middleton Adam J
Department of Biochemistry, School of Biomedical Sciences, University of Otago, Dunedin, New Zealand.
Department of Pharmacy, University of Waterloo, Kitchener, Canada.
FEBS J. 2024 Dec;291(23):5305-5321. doi: 10.1111/febs.17311. Epub 2024 Oct 29.
The ubiquitin-conjugating E2 enzymes play a central role in ubiquitin transfer. Disruptions to the ubiquitin system are implicated in multiple diseases, and as a result, molecules that modulate the activity of the ubiquitin system are of interest. E2 enzyme function relies on interactions with partner proteins, and the disruption of these is an effective way to modulate activity. Here, we report the discovery of ubiquitin variants (UbVs) that inhibit the E2 enzyme, Ube2d2 (UbcH5b). The six UbVs identified inhibit ubiquitin chain building, and the structural and biophysical characterisation of two of these demonstrate they bind to Ube2d2 with low micromolar affinity and high specificity. Both characterised UbVs bind at a site that overlaps with E1 binding, while the more inhibitory UbV has an additional binding site that blocks a critical non-covalent ubiquitin-binding site on the E2 enzyme. The discovery of novel protein-based ubiquitin derivatives that inhibit protein-protein interactions is an important step towards discovering small molecules that inhibit the activity of E2 enzymes. Furthermore, the specificity of the UbVs within the Ube2d family suggests that it may be possible to develop tools to selectively inhibit highly related E2 enzymes.
泛素结合E2酶在泛素转移过程中起着核心作用。泛素系统的紊乱与多种疾病有关,因此,调节泛素系统活性的分子备受关注。E2酶的功能依赖于与伴侣蛋白的相互作用,而破坏这些相互作用是调节其活性的有效方式。在此,我们报告了泛素变体(UbV)的发现,这些变体可抑制E2酶Ube2d2(UbcH5b)。所鉴定出的6种UbV可抑制泛素链的形成,其中两种的结构和生物物理特性表明它们以低微摩尔亲和力和高特异性与Ube2d2结合。两种已表征的UbV均在与E1结合位点重叠的位置结合,而抑制作用更强的UbV还有一个额外的结合位点,该位点阻断了E2酶上一个关键的非共价泛素结合位点。发现抑制蛋白质-蛋白质相互作用的新型基于蛋白质的泛素衍生物是朝着发现抑制E2酶活性的小分子迈出的重要一步。此外,UbV在Ube2d家族中的特异性表明,有可能开发出选择性抑制高度相关E2酶的工具。