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An E2-ubiquitin thioester-driven approach to identify substrates modified with ubiquitin and ubiquitin-like molecules

机译:E2-泛素硫酯驱动的方法,以鉴定被泛素和类泛素分子修饰的底物

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Covalent modifications of proteins with ubiquitin and ubiquitin-like molecules are instrumental to many biological processes. However, identifying the E3 ligase responsible for these modifications remains a major bottleneck in ubiquitin research. Here, we present an E2-thioester-driven identification (E2~dID) method for the targeted identification of substrates of specific E2 and E3 enzyme pairs. E2~dID exploits the central position of E2-conjugating enzymes in the ubiquitination cascade and provides in vitro generated biotinylated E2~ubiquitin thioester conjugates as the sole source for ubiquitination in extracts. This enables purification and mass spectrometry-based identification of modified proteins under stringent conditions independently of the biological source of the extract. We demonstrate the sensitivity and specificity of E2-dID by identifying and validating substrates of APC/C in human cells. Finally, we perform E2~dID with SUMO in S. cerevisiae, showing that this approach can be easily adapted to other ubiquitin-like modifiers and experimental models.
机译:蛋白质与泛素和类泛素分子的共价修饰对许多生物学过程都有帮助。但是,鉴定负责这些修饰的E3连接酶仍然是泛素研究的主要瓶颈。在这里,我们提出了一种针对特定E2和E3酶对的底物的靶向鉴定的E2-硫酯驱动的鉴定(E2〜dID)方法。 E2-dID利用E2-缀合酶在泛素化级联反应中的中心位置,并提供体外产生的生物素化的E2-泛素硫酯偶联物作为提取物中泛素化的唯一来源。这使得能够在严格条件下独立于提取物的生物来源,对修饰的蛋白质进行纯化和基于质谱的鉴定。我们通过鉴定和验证人类细胞中APC / C的底物证明E2-dID的敏感性和特异性。最后,我们在SU.cerevisiae中用SUMO进行E2〜dID,表明该方法可轻松适应其他泛素样修饰剂和实验模型。

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