Ontario Cancer Institute, and McLaughlin Centre for Molecular Medicine, Toronto, ON, M5G 1L7, Canada.
Proteomics. 2010 Jan;10(2):254-65. doi: 10.1002/pmic.200900648.
Ubiquitin (Ub) and the ubiquitin-like proteins (Ubls) comprise a remarkable assortment of polypeptides that are covalently conjugated to target proteins (or other biomolecules) to modulate their intracellular localization, half-life, and/or activity. Identification of Ub/Ubl conjugation sites on a protein of interest can thus be extremely important for understanding how it is regulated. While MS has become a powerful tool for the study of many classes of PTMs, the identification of Ub/Ubl conjugation sites presents a number of unique challenges. Here, we present an improved Ub/Ubl conjugation site identification strategy, utilizing SUMmOn analysis and an additional protease (lysyl endopeptidase C), as a complement to standard approaches. As compared with standard trypsin proteolysis-database search protocols alone, the addition of SUMmOn analysis can (i) identify Ubl conjugation sites that are not detected by standard database searching methods, (ii) better preserve Ub/Ubl conjugate identity, and (iii) increase the number of identifications of Ub/Ubl modifications in lysine-rich protein regions. Using this methodology, we characterize for the first time a number of novel Ubl linkages and conjugation sites, including alternative yeast (K54) and mammalian small ubiquitin-related modifier (SUMO) chain (SUMO-2 K42, SUMO-3 K41) assemblies, as well as previously unreported NEDD8 chain (K27, K33, and K54) topologies.
泛素 (Ub) 和类泛素蛋白 (Ubls) 组成了一组显著的多肽,它们通过共价键与靶蛋白(或其他生物分子)结合,以调节其细胞内定位、半衰期和/或活性。因此,鉴定感兴趣的蛋白质上的 Ub/Ubl 连接位点对于了解其如何被调控非常重要。虽然 MS 已成为研究许多 PTM 类别的强大工具,但鉴定 Ub/Ubl 连接位点提出了许多独特的挑战。在这里,我们提出了一种改进的 Ub/Ubl 连接位点鉴定策略,利用 SUMmOn 分析和额外的蛋白酶(赖氨酰内肽酶 C),作为标准方法的补充。与单独使用标准胰蛋白酶蛋白水解数据库搜索方案相比,SUMmOn 分析的添加可以:(i) 鉴定标准数据库搜索方法无法检测到的 Ubl 连接位点,(ii) 更好地保留 Ub/Ubl 缀合物的身份,以及 (iii) 增加富含赖氨酸的蛋白质区域中 Ub/Ubl 修饰的鉴定数量。使用这种方法学,我们首次对一些新的 Ubl 连接和连接位点进行了特征描述,包括替代酵母 (K54) 和哺乳动物小泛素相关修饰物 (SUMO) 链 (SUMO-2 K42、SUMO-3 K41) 组装,以及以前未报道的 NEDD8 链 (K27、K33 和 K54) 拓扑结构。