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异喹啉骨架中的卤素取代基切换 USP2 和 USP7 抑制选择性。

Halogen Substituents in the Isoquinoline Scaffold Switches the Selectivity of Inhibition between USP2 and USP7.

机构信息

Schulich Faculty of Chemistry, Technion-Israel Institute of Technology, Haifa, 3200008, Israel.

出版信息

Chembiochem. 2019 Jan 18;20(2):282-286. doi: 10.1002/cbic.201800612. Epub 2018 Dec 14.

Abstract

Deubiquitinases are important components of the protein regulatory network and, hence, constitute a tempting drug target. We report herein structure-activity relationship studies to develop halogen-substituted isoquionoline-1,3-dione-based inhibitors of the deubiquitinase USP2. In contrast to our previous reports, the best compound discovered was found to act through a reactive oxygen species independent, uncompetitive mechanism with an IC of 250 nm. We show the crucial role of halogens in the common scaffold to provide potency and selectivity of our compound, where the introduction of the fluorine atom completely switches the selectivity of the inhibitor between USP2 and USP7. Our cellular studies highlight the potential applicability of the reported compound for in vivo experiments. The discovery of the isoquinoline-1,3-dione core and the knowledge obtained with regard to halogen substituents provide a platform towards understanding USP2 inhibition and the development of highly selective next-generation deubiquitinase inhibitors.

摘要

去泛素化酶是蛋白质调控网络的重要组成部分,因此成为了一个极具吸引力的药物靶点。本文报道了基于异喹啉-1,3-二酮的去泛素化酶 USP2 的卤代结构活性关系研究。与我们之前的报告不同,发现最佳化合物是通过一种与活性氧无关的非竞争性机制发挥作用,IC 为 250nm。我们展示了卤原子在共同支架中的关键作用,为我们化合物的效力和选择性提供了支持,其中氟原子的引入完全改变了抑制剂在 USP2 和 USP7 之间的选择性。我们的细胞研究强调了所报道的化合物在体内实验中的潜在应用。异喹啉-1,3-二酮核心的发现以及有关卤代物的知识为理解 USP2 抑制作用和开发高选择性的下一代去泛素化酶抑制剂提供了一个平台。

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