Ali Muhammad Shahzad, Rainville Christopher, Pedroza Janelle, Sterner David E, Wang Hehe, Suresh Kumar, Butt Tauseef R
Progenra Inc, 271A Great Valley Parkway, Malvern, PA, 19335, USA.
LifeSensors Inc, 271 Great Valley Parkway, Malvern, PA, 19335, USA.
Sci Rep. 2025 Jul 2;15(1):22961. doi: 10.1038/s41598-025-07242-9.
Polyubiquitination of proteins serves distinct functions that are governed by the nature of polyubiquitin chains built on target proteins. Among the eight distinct type of ubiquitin chains, lysine 48 (K48)-linked chains are specifically associated with proteasomal degradation, while lysine 63 (K63)-linked chains are primarily involved in regulating signal transduction and protein trafficking. The ubiquitin-proteasome system (UPS) has recently been exploited in drug discovery and introduced PROTACs (Proteolysis Targeting Chimeras), or molecular glues (MGs), to hijack ubiquitin E3 ligases, to facilitate the targeted degradation of specific proteins. However, assessment of PROTAC or MG mediated endogenous target protein ubiquitination in a linkage-specific manner in high throughput format remains a challenge. In this study, we applied chain-specific TUBEs (Tandem Ubiquitin Binding Entities) with nanomolar affinities for polyubiquitin chains in HTS assays to investigate the ubiquitination dynamics of RIPK2, a key regulator of inflammatory signaling. Using L18-MDP to induce K63 ubiquitination of RIPK2 and RIPK degrader-2, a RIPK2 PROTAC to induce K48 ubiquitination, we demonstrate that chain-selective TUBEs can differentiate and unravel context dependent linkage specific ubiquitination of endogenous RIPK2. Potential application of this technology to other target proteins and cellular contexts will be discussed.
蛋白质的多聚泛素化具有不同的功能,这些功能由在靶蛋白上构建的多聚泛素链的性质所决定。在八种不同类型的泛素链中,赖氨酸48(K48)连接的链与蛋白酶体降解特异性相关,而赖氨酸63(K63)连接的链主要参与调节信号转导和蛋白质运输。泛素-蛋白酶体系统(UPS)最近已被用于药物发现,并引入了蛋白酶靶向嵌合体(PROTACs)或分子胶(MGs)来劫持泛素E3连接酶,以促进特定蛋白质的靶向降解。然而,以高通量形式以连接特异性方式评估PROTAC或MG介导的内源性靶蛋白泛素化仍然是一个挑战。在本研究中,我们在高通量筛选试验中应用了对多聚泛素链具有纳摩尔亲和力的链特异性串联泛素结合实体(TUBEs),以研究炎症信号关键调节因子RIPK2的泛素化动力学。使用L18-MDP诱导RIPK2的K63泛素化,以及RIPK降解剂-2(一种RIPK2的PROTAC)诱导K48泛素化,我们证明链选择性TUBEs可以区分并揭示内源性RIPK2的上下文依赖性连接特异性泛素化。将讨论该技术在其他靶蛋白和细胞环境中的潜在应用。