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N-氰基哌嗪类化合物作为去泛素化酶UCHL1 的特异性共价抑制剂。

N-Cyanopiperazines as Specific Covalent Inhibitors of the Deubiquitinating Enzyme UCHL1.

机构信息

Chemical Genomics Centre, Max-Planck-Institute of Molecular Physiology, Otto-Hahn-Str. 15, D-44227, Dortmund, Germany.

Department of Chemistry and Chemical Biology, TU Dortmund University, Otto-Hahn-Str. 15, D-44227, Dortmund, Germany.

出版信息

Angew Chem Int Ed Engl. 2024 Mar 18;63(12):e202318849. doi: 10.1002/anie.202318849. Epub 2024 Feb 9.

Abstract

Cyanamides have emerged as privileged scaffolds in covalent inhibitors of deubiquitinating enzymes (DUBs). However, many compounds with a cyanopyrrolidine warhead show cross-reactivity toward small subsets of DUBs or toward the protein deglycase PARK7/DJ-1, hampering their use for the selective perturbation of a single DUB in living cells. Here, we disclose N'-alkyl,N-cyanopiperazines as structures for covalent enzyme inhibition with exceptional specificity for the DUB UCHL1 among 55 human deubiquitinases and with effective target engagement in cells. Notably, transitioning from 5-membered pyrrolidines to 6-membered heterocycles eliminated PARK7 binding and introduced context-dependent reversibility of the isothiourea linkage to the catalytic cysteine of UCHL1. Compound potency and specificity were analysed by a range of biochemical assays and with a crystal structure of a cyanopiperazine in covalent complex with UCHL1. The structure revealed a compound-induced conformational restriction of the cross-over loop, which underlies the observed inhibitory potencies. Through the rationalization of specificities of different cyanamides, we introduce a framework for the investigation of protein reactivity of bioactive nitriles of this compound class. Our results represent an encouraging case study for the refining of electrophilic compounds into chemical probes, emphasizing the potential to engineer specificity through subtle chemical modifications around the warhead.

摘要

氰酰胺已成为共价去泛素化酶(DUB)抑制剂中的优势骨架。然而,许多带有氰基吡咯烷弹头的化合物对一小部分 DUB 或对蛋白去糖基酶 PARK7/DJ-1 表现出交叉反应性,阻碍了它们在活细胞中用于单一 DUB 的选择性扰动。在这里,我们揭示了 N'-烷基,N-氰基哌嗪作为共价酶抑制物的结构,在 55 个人类去泛素化酶中,对 DUB UCHL1 具有非凡的特异性,并且在细胞中有有效的靶标结合。值得注意的是,从 5 元吡咯烷过渡到 6 元杂环消除了与 PARK7 的结合,并引入了与 UCHL1 的催化半胱氨酸的上下文相关的异硫脲键的可逆性。通过一系列生化测定和与 UCHL1 形成共价复合物的氰基哌嗪晶体结构分析了化合物的效力和特异性。该结构揭示了一种化合物诱导的交叉环loop 的构象限制,这是观察到的抑制效力的基础。通过对不同氰酰胺的特异性进行合理化,我们为研究该类生物活性腈的蛋白质反应性引入了一个框架。我们的结果代表了将亲电化合物精炼成化学探针的一个令人鼓舞的案例研究,强调了通过围绕弹头进行微妙的化学修饰来工程化特异性的潜力。

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