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一种为高通量筛选和分子胶发现而优化的工程化脑啡肽。

An engineered cereblon optimized for high-throughput screening and molecular glue discovery.

作者信息

Bailey Henry J, Eisert Jonathan, Kazi Rubina, Gerhartz Jan, Pieńkowska Dominika Ewa, Dressel Ina, Vollrath Joshua, Kondratov Ivan, Matviyuk Tetiana, Tolmachova Nataliya, Shah Varun Jayeshkumar, Giuliani Giulio, Mosler Thorsten, Geiger Thomas M, Esteves Ana M, Santos Sandra P, Sousa Raquel L, Bandeiras Tiago M, Leibrock Eva-Maria, Bauer Ulrike, Leuthner Birgitta, Langer Julian D, Wegener Ansgar A, Nowak Radosław P, Sorrell Fiona J, Dikic Ivan

机构信息

Institute of Biochemistry II, Medical Faculty, Goethe-University, Frankfurt am Main and Buchmann Institute for Molecular Life Sciences, Frankfurt am Main, Germany; Max Planck Institute of Biophysics, Max-von-Laue-Strasse 3, 60439 Frankfurt am Main, Germany.

Merck Healthcare KGaA, Discovery and Development Technologies, Frankfurter Straße 250, 64293 Darmstadt, Germany.

出版信息

Cell Chem Biol. 2025 Feb 20;32(2):363-376.e10. doi: 10.1016/j.chembiol.2024.11.002. Epub 2024 Nov 27.

Abstract

The majority of clinical degraders utilize an immunomodulatory imide drug (IMiD)-based derivative that directs their target to the E3 ligase receptor cereblon (CRBN); however, identification of IMiD molecular glue substrates has remained underexplored. To tackle this, we design human CRBN constructs, which retain all features for ternary complex formation, while allowing generation of homogenous and cost-efficient expression in E. coli. Extensive profiling of the construct shows it to be the "best of both worlds" in terms of binding activity and ease of production. We next designed the "Enamine focused IMiD library" and demonstrated applicability of the construct to high-throughput screening, identifying binders with high potency, ligand efficiency, and specificity. Finally, we adapt our construct for proof of principle glue screening approaches enabling IMiD cellular interactome determination. Coupled with our IMiD binding landscape the methods described here should serve as valuable tools to assist discovery of next generation CRBN glues.

摘要

大多数临床降解剂利用基于免疫调节性酰亚胺药物(IMiD)的衍生物,将其靶点导向E3连接酶受体小脑萎缩相关蛋白(CRBN);然而,IMiD分子胶底物的鉴定仍未得到充分探索。为了解决这个问题,我们设计了人CRBN构建体,它保留了三元复合物形成的所有特征,同时允许在大肠杆菌中产生均匀且经济高效的表达。对该构建体的广泛分析表明,它在结合活性和生产便利性方面是“两全其美”。接下来,我们设计了“烯胺聚焦IMiD文库”,并证明了该构建体在高通量筛选中的适用性,鉴定出具有高效能、配体效率和特异性的结合剂。最后,我们调整构建体用于原理验证胶筛选方法,从而能够确定IMiD细胞相互作用组。结合我们的IMiD结合图谱,这里描述的方法应成为协助发现下一代CRBN胶的有价值工具。

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