小脑
泛素连接酶
计算生物学
相互作用体
泛素蛋白连接酶类
鉴定(生物学)
锌指
生物
化学
血浆蛋白结合
药物发现
蛋白质-蛋白质相互作用
人类蛋白质
DNA连接酶
可药性
互补
细胞生物学
计算机科学
结合位点
HEK 293细胞
底物特异性
溴尿嘧啶
DNA结合蛋白
生物信息学
基质(水族馆)
泛素
作者
Pius Galli,Shuhao Xiao,Yanxiang Meng,Alexander Hanzl,Alexandra M. Bendel,Regina Baur,Jacob D. Aguirre,Anna M. Díaz-Rovira,Maximilian R. Stammnitz,Georg Kempf,Lukas Kater,Kenji Shimada,Ye Wei,Andreas Scheck,Dominique Klein,Simone Cavadini,Ben Lehner,Guillaume Diss,Bruno E. Correia,Nicolas H. Thomä
标识
DOI:10.1038/s41587-026-03237-7
摘要
Molecular glue degraders (MGDs), such as pomalidomide, induce degradation of non-native substrates by the cullin-RING E3 ligase 4 (CRL4) through its substrate receptor cereblon (CRBN). Here, to explore CRBN programmability, we tested whether reported CRBN-MGD substrates are part of a network of latent CRBN interactors, proteins capable of MGD-induced CRBN binding without detectable degradation. Leveraging a highly parallel protein complementation assay (GluePCA) to measure MGD-induced interaction between CRBN and zinc fingers, we identified ~210 zinc fingers bound to CRBN-pomalidomide, where top binders are already reported as degraded by dedicated MGDs. To map latent CRBN-MGD interactions proteome-wide and define the accessible CRBN interaction space, we combined artificial intelligence-derived protein surface queries (MaSIF-mimicry) with GluePCA. This pipeline identified 6 known and 43 novel CRBN-pomalidomide binders, including orthogonally validated hits. We find that these binders provide privileged starting points for MGD development. We expect this binding-focused workflow to be applicable to other MGD-E3 ligase systems, potentially extending the scope of this emerging drug class.
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