Department of Chemistry and Biochemistry, University of Nevada, Las Vegas, Las Vegas, NV 89154, USA.
Department of Molecular Machines and Signaling, Max Planck Institute of Biochemistry, Martinsried 82152, Germany.
Mol Cell. 2024 Apr 4;84(7):1304-1320.e16. doi: 10.1016/j.molcel.2024.01.022. Epub 2024 Feb 20.
Cullin-RING ligases (CRLs) ubiquitylate specific substrates selected from other cellular proteins. Substrate discrimination and ubiquitin transferase activity were thought to be strictly separated. Substrates are recognized by substrate receptors, such as Fbox or BCbox proteins. Meanwhile, CRLs employ assorted ubiquitin-carrying enzymes (UCEs, which are a collection of E2 and ARIH-family E3s) specialized for either initial substrate ubiquitylation (priming) or forging poly-ubiquitin chains. We discovered specific human CRL-UCE pairings governing substrate priming. The results reveal pairing of CUL2-based CRLs and UBE2R-family UCEs in cells, essential for efficient PROTAC-induced neo-substrate degradation. Despite UBE2R2's intrinsic programming to catalyze poly-ubiquitylation, CUL2 employs this UCE for geometrically precise PROTAC-dependent ubiquitylation of a neo-substrate and for rapid priming of substrates recruited to diverse receptors. Cryo-EM structures illuminate how CUL2-based CRLs engage UBE2R2 to activate substrate ubiquitylation. Thus, pairing with a specific UCE overcomes E2 catalytic limitations to drive substrate ubiquitylation and targeted protein degradation.
Cullin-RING 连接酶 (CRLs) 从其他细胞蛋白中泛素化特定的底物。底物识别和泛素转移酶活性被认为是严格分离的。底物被底物受体识别,如 Fbox 或 BCbox 蛋白。同时,CRLs 采用各种携带泛素的酶 (UCEs,包括 E2 和 ARIH 家族的 E3s),专门用于初始底物泛素化 (引发) 或锻造多泛素链。我们发现了特定的人类 CRL-UCE 配对,可控制底物引发。研究结果揭示了基于 CUL2 的 CRL 和 UBE2R 家族的 UCE 在细胞中的配对,这对 PROTAC 诱导的新底物降解至关重要。尽管 UBE2R2 具有内在的编程能力,可以催化多泛素化,但 CUL2 利用该 UCE 进行几何精确的 PROTAC 依赖性新底物泛素化,并对招募到不同受体的底物进行快速引发。冷冻电镜结构阐明了基于 CUL2 的 CRL 如何与 UBE2R2 结合以激活底物泛素化。因此,与特定的 UCE 配对克服了 E2 催化的限制,从而驱动底物泛素化和靶向蛋白质降解。