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周期蛋白 K 分子胶降解剂的设计原则。

Design principles for cyclin K molecular glue degraders.

机构信息

Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.

Department of Biology, University of Basel, Basel, Switzerland.

出版信息

Nat Chem Biol. 2024 Jan;20(1):93-102. doi: 10.1038/s41589-023-01409-z. Epub 2023 Sep 7.

Abstract

Molecular glue degraders are an effective therapeutic modality, but their design principles are not well understood. Recently, several unexpectedly diverse compounds were reported to deplete cyclin K by linking CDK12-cyclin K to the DDB1-CUL4-RBX1 E3 ligase. Here, to investigate how chemically dissimilar small molecules trigger cyclin K degradation, we evaluated 91 candidate degraders in structural, biophysical and cellular studies and reveal all compounds acquire glue activity via simultaneous CDK12 binding and engagement of DDB1 interfacial residues, in particular Arg928. While we identify multiple published kinase inhibitors as cryptic degraders, we also show that these glues do not require pronounced inhibitory properties for activity and that the relative degree of CDK12 inhibition versus cyclin K degradation is tuneable. We further demonstrate cyclin K degraders have transcriptional signatures distinct from CDK12 inhibitors, thereby offering unique therapeutic opportunities. The systematic structure-activity relationship analysis presented herein provides a conceptual framework for rational molecular glue design.

摘要

分子胶降解剂是一种有效的治疗方式,但人们对其设计原理还了解得不够透彻。最近,有几种出人意料的不同化合物被报道通过将 CDK12-细胞周期蛋白 K 与 DDB1-CUL4-RBX1 E3 连接酶连接,从而耗尽细胞周期蛋白 K。在这里,为了研究化学性质不同的小分子如何引发细胞周期蛋白 K 降解,我们在结构、生物物理和细胞研究中评估了 91 种候选降解剂,并揭示所有化合物都是通过同时结合 CDK12 和结合 DDB1 界面残基(特别是 Arg928)来获得胶活性。虽然我们发现了多种已发表的激酶抑制剂是隐藏的降解剂,但我们还表明,这些胶不需要明显的抑制活性,并且 CDK12 抑制与细胞周期蛋白 K 降解的相对程度是可调的。我们还进一步证明,细胞周期蛋白 K 降解剂具有与 CDK12 抑制剂不同的转录特征,从而提供了独特的治疗机会。本文呈现的系统结构-活性关系分析为合理的分子胶设计提供了一个概念框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72e7/10746543/6d2b918ea76b/41589_2023_1409_Fig1_HTML.jpg

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