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从天然分子胶降解剂中吸取的教训。

Lessons from natural molecular glue degraders.

机构信息

Department of Pharmacology, University of Washington, Seattle, WA, U.S.A.

Howard Hughes Medical Institute, University of Washington, Seattle, WA, U.S.A.

出版信息

Biochem Soc Trans. 2024 Jun 26;52(3):1191-1197. doi: 10.1042/BST20230836.

Abstract

Molecular glue (MG) degraders include plant hormones and therapeutic drugs and have become a hot topic in drug discovery. Unlike bivalent proteolysis targeting chimeras (PROTACs), monovalent MGs can trigger the degradation of non-ligandable proteins by enhancing their interaction with E3 ubiquitin ligases. Here, I analyze the characteristics of natural MG degraders, contrast them with synthetic ones, and provide a rationale for optimizing MGs. In natural MG-based degradation systems, a stable complex is only formed when all three partners (MG, E3 ligase, and substrate) are present, while the affinities between any two components are either weak or undetectable. After the substrate is degraded, the MG will dissociate from its receptor (E3 ligase) due to their low micromolar affinity. In contrast, synthetic MGs, such as immunomodulatory drugs (IMiDs) and CR8, are potent inhibitors of their receptors by blocking the CRBN-native substrate interaction or by occupying the active site of CDK12. Inspired by nature, the affinities of IMiDs to CRBN can be reduced to make those compounds degraders without the E3-inhibitory activity, therefore, minimizing the interference with the physiological substrates of CRBN. Similarly, the CR8-CDK interaction can be weakened to uncouple the degrader function from the kinase inhibition. To mimic natural examples and reduce side effects, future development of MG degraders that lack the inhibitory activity should be considered.

摘要

分子胶 (MG) 降解剂包括植物激素和治疗性药物,已成为药物发现的热门话题。与双价蛋白水解靶向嵌合体 (PROTACs) 不同,单价 MG 可以通过增强其与 E3 泛素连接酶的相互作用来触发不可配体蛋白的降解。在这里,我分析了天然 MG 降解剂的特点,将其与合成的进行了对比,并为优化 MG 提供了依据。在基于天然 MG 的降解系统中,只有当所有三个伙伴(MG、E3 连接酶和底物)都存在时,才会形成稳定的复合物,而任何两个组件之间的亲和力要么很弱,要么无法检测到。在底物被降解后,由于 MG 与受体(E3 连接酶)之间的亲和力低至微摩尔级,MG 会从其受体上解离。相比之下,合成的 MG,如免疫调节剂(IMiDs)和 CR8,通过阻断 CRBN-天然底物相互作用或占据 CDK12 的活性位点,成为其受体的有效抑制剂。受自然的启发,可以降低 IMiDs 与 CRBN 的亲和力,使这些化合物成为没有 E3 抑制活性的降解剂,从而最大程度地减少对 CRBN 生理底物的干扰。同样,可以削弱 CR8-CDK 相互作用,使降解剂功能与激酶抑制作用脱耦。为了模仿天然例子并减少副作用,应考虑开发缺乏抑制活性的 MG 降解剂。

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