Cullin-RING ligase BioE3 reveals molecular-glue-induced neosubstrates and rewiring of the endogenous Cereblon ubiquitome.

IF 8.2 2区 生物学 Q1 CELL BIOLOGY Cell Communication and Signaling Pub Date : 2025-02-19 DOI:10.1186/s12964-025-02091-5
Laura Merino-Cacho, Orhi Barroso-Gomila, Mónica Pozo-Rodríguez, Veronica Muratore, Claudia Guinea-Pérez, Álvaro Serrano, Coralia Pérez, Sandra Cano-López, Ainhoa Urcullu, Mikel Azkargorta, Ibon Iloro, Carles Galdeano, Jordi Juárez-Jiménez, Ugo Mayor, Felix Elortza, Rosa Barrio, James D Sutherland
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Abstract

Background: The specificity of the ubiquitination process is mediated by the E3 ligases. Discriminating genuine substrates of E3s from mere interacting proteins is one of the major challenges in the field. We previously developed BioE3, a biotin-based approach that uses BirA-E3 fusions together with ubiquitin fused to a low-affinity AviTag to obtain a site-specific and proximity-dependent biotinylation of the substrates. We proved the suitability of BioE3 to identify targets of RING and HECT-type E3 ligases.

Methods: BioE3 experiments were performed in HEK293FT and U2OS stable cell lines expressing TRIPZ-bioGEFUb transiently transfected with BirA-cereblon (CRBN). Cells were seeded using biotin-free media, followed later by a short-biotin pulse. We evaluated the applicability of the BioE3 system to CRBN and molecular glues by Western blot and confocal microscopy, blocking the proteasome with bortezomib, inhibiting NEDDylation with MLN4924 and treating the cells with pomalidomide. For the identification of endogenous substrates and neosubstrates we analyzed the eluates of streptavidin pull-downs of BioE3 experiments by LC-MS/MS. Analysis of targets for which ubiquitination changes significantly upon treatment was done using two-sided Student's t-test. Orthogonal validations were performed by histidine pull-down, GFP-trap and computational modelling.

Results: Here we demonstrate that BioE3 is suitable for the multi-protein complex Cullin-RING E3s ligases (CRLs), the most utilized E3-type for targeted protein degradation (TPD) strategies. Using CRBN as proof of concept, one of the substrate receptors of CRL4 E3 ligase, we identified both endogenous substrates and novel neosubstrates upon pomalidomide treatment, including CSDE1 which contains a G-loop motif potentially involved in the binding to CRBN in presence of pomalidomide. Importantly, we observed a major rearrangement of the endogenous ubiquitination landscape upon treatment with this molecular glue.

Conclusions: The ability of BioE3 to detect and compare both substrates and neosubstrates, as well as how substrates change in response to treatments, will facilitate both on-target and off-target identifications and offer a broader characterization and validation of TPD compounds, like molecular glues and PROTACs.

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Cullin-RING连接酶BioE3揭示了分子胶诱导的新底物和内源性小脑泛素组的重新连接。
背景:泛素化过程的特异性是由E3连接酶介导的。从仅仅相互作用的蛋白质中区分真正的E3s底物是该领域的主要挑战之一。我们之前开发了BioE3,这是一种基于生物素的方法,使用BirA-E3融合物与泛素融合到低亲和力的AviTag中,以获得底物的位点特异性和邻近依赖的生物素化。我们证明了BioE3能够识别RING和hect型E3连接酶的靶标。方法:在HEK293FT和U2OS稳定细胞系中进行BioE3实验,这些细胞系表达瞬时转染BirA-cereblon (CRBN)的TRIPZ-bioGEFUb。细胞使用无生物素培养基播种,随后使用短生物素脉冲。我们通过Western blot和共聚焦显微镜评估了BioE3系统对CRBN和分子胶的适用性,用硼替佐米阻断蛋白酶体,用MLN4924抑制neddyylation,并用泊马度胺处理细胞。为了鉴定内源性底物和新底物,我们用LC-MS/MS分析了BioE3实验中链霉亲和素拉下的洗脱物。使用双侧学生t检验分析治疗后泛素化发生显著变化的靶标。通过组氨酸下拉、gfp陷阱和计算模型进行正交验证。结果:本研究证明BioE3适用于多蛋白复合物Cullin-RING E3s连接酶(CRLs),这是最常用的e3型靶向蛋白降解(TPD)策略。使用CRBN作为概念证明,CRL4 E3连接酶的底物受体之一,我们在泊马度胺处理下鉴定了内源性底物和新型底物,包括CSDE1,它含有一个g环基序,可能参与在泊马度胺存在下与CRBN的结合。重要的是,我们观察到内源性泛素化景观的主要重排与这种分子胶处理。结论:BioE3检测和比较底物和新底物的能力,以及底物如何响应治疗变化的能力,将有助于靶标和非靶标鉴定,并为分子胶和PROTACs等TPD化合物提供更广泛的表征和验证。
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期刊介绍: Cell Communication and Signaling (CCS) is a peer-reviewed, open-access scientific journal that focuses on cellular signaling pathways in both normal and pathological conditions. It publishes original research, reviews, and commentaries, welcoming studies that utilize molecular, morphological, biochemical, structural, and cell biology approaches. CCS also encourages interdisciplinary work and innovative models, including in silico, in vitro, and in vivo approaches, to facilitate investigations of cell signaling pathways, networks, and behavior. Starting from January 2019, CCS is proud to announce its affiliation with the International Cell Death Society. The journal now encourages submissions covering all aspects of cell death, including apoptotic and non-apoptotic mechanisms, cell death in model systems, autophagy, clearance of dying cells, and the immunological and pathological consequences of dying cells in the tissue microenvironment.
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