New Cornerstone Science Laboratory, Tsinghua-Peking Joint Center for Life Sciences, MOE Key Laboratory of Bioorganic Phosphorus Chemistry and Chemical Biology, Center for Synthetic and Systems Biology, Department of Chemistry, Tsinghua University, Beijing, 100084, China.
Institute of Translational Medicine, School of Chemistry and Chemical Engineering, School of Pharmacy, National Center for Translational Medicine (Shanghai), Shanghai Jiao Tong University, Shanghai, 200240, China.
Nat Commun. 2024 Feb 10;15(1):1266. doi: 10.1038/s41467-024-45635-y.
Ubiquitination, catalyzed usually by a three-enzyme cascade (E1, E2, E3), regulates various eukaryotic cellular processes. E3 ligases are the most critical components of this catalytic cascade, determining both substrate specificity and polyubiquitination linkage specificity. Here, we reveal the mechanism of a naturally occurring E3-independent ubiquitination reaction of a unique human E2 enzyme UBE2E1 by solving the structure of UBE2E1 in complex with substrate SETDB1-derived peptide. Guided by this peptide sequence-dependent ubiquitination mechanism, we developed an E3-free enzymatic strategy SUE1 (sequence-dependent ubiquitination using UBE2E1) to efficiently generate ubiquitinated proteins with customized ubiquitinated sites, ubiquitin chain linkages and lengths. Notably, this strategy can also be used to generate site-specific branched ubiquitin chains or even NEDD8-modified proteins. Our work not only deepens the understanding of how an E3-free substrate ubiquitination reaction occurs in human cells, but also provides a practical approach for obtaining ubiquitinated proteins to dissect the biochemical functions of ubiquitination.
泛素化,通常由三酶级联(E1、E2、E3)催化,调节各种真核细胞过程。E3 连接酶是这个催化级联的最关键组成部分,决定了底物特异性和多泛素化连接特异性。在这里,我们通过解析 UBE2E1 与来源于 SETDB1 的底物肽复合物的结构,揭示了一种天然存在的、不依赖 E3 的独特人类 E2 酶 UBE2E1 的泛素化反应机制。受该肽序列依赖性泛素化机制的指导,我们开发了一种无 E3 的酶促策略 SUE1(使用 UBE2E1 的序列依赖性泛素化),可有效地生成具有定制化泛素化位点、泛素链连接和长度的泛素化蛋白。值得注意的是,该策略还可用于生成具有特定位置分支的泛素化链,甚至是 NEDD8 修饰的蛋白。我们的工作不仅加深了对人类细胞中无 E3 底物泛素化反应如何发生的理解,而且还为获得泛素化蛋白以剖析泛素化的生化功能提供了一种实用方法。