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基于苯硫甲基酮的片段对肠道病毒 3C 蛋白酶表现出选择性和不可逆的抑制作用。

Phenylthiomethyl Ketone-Based Fragments Show Selective and Irreversible Inhibition of Enteroviral 3C Proteases.

机构信息

Pharmaceutical and Medicinal Chemistry, Institute of Pharmacy, Freie Universität Berlin , Königin-Luise Straße 2+4, Berlin 14195, Germany.

Medicinal Chemistry Department, Faculty of Pharmacy, Assiut University , Assiut 71526, Egypt.

出版信息

J Med Chem. 2018 Feb 8;61(3):1218-1230. doi: 10.1021/acs.jmedchem.7b01440. Epub 2018 Jan 27.

Abstract

Lead structure discovery mainly focuses on the identification of noncovalently binding ligands. Covalent linkage, however, is an essential binding mechanism for a multitude of successfully marketed drugs, although discovered by serendipity in most cases. We present a concept for the design of fragments covalently binding to proteases. Covalent linkage enables fragment binding unrelated to affinity to shallow protein binding sites and at the same time allows differentiated targeted hit verification and binding location verification through mass spectrometry. We describe a systematic and rational computational approach for the identification of covalently binding fragments from compound collections inhibiting enteroviral 3C protease, a target with high therapeutic potential. By implementing reactive groups potentially forming covalent bonds as a chemical feature in our 3D pharmacophore methodology, covalent binders were discovered by high-throughput virtual screening. We present careful experimental validation of the virtual hits using enzymatic assays and mass spectrometry unraveling a novel, previously unknown irreversible inhibition of the 3C protease by phenylthiomethyl ketone-based fragments. Subsequent synthetic optimization through fragment growing and reactivity analysis against catalytic and noncatalytic cysteines revealed specific irreversible 3C protease inhibition.

摘要

先导结构发现主要集中在识别非共价结合的配体上。然而,共价键合是许多成功上市药物的基本结合机制,尽管在大多数情况下是偶然发现的。我们提出了一种针对与蛋白酶共价结合的片段设计的概念。共价键合能够使片段与亲和力无关的结合,与浅的蛋白质结合位点结合,同时允许通过质谱进行差异化的靶向命中验证和结合位置验证。我们描述了一种系统和合理的计算方法,用于从抑制肠道病毒 3C 蛋白酶的化合物库中鉴定共价结合的片段,肠道病毒 3C 蛋白酶是一个具有高治疗潜力的靶点。通过在我们的 3D 药效团方法中实现潜在形成共价键的反应性基团作为化学特征,通过高通量虚拟筛选发现共价配体。我们使用酶测定法和质谱法对虚拟命中进行了仔细的实验验证,揭示了基于苯硫甲基酮的片段对 3C 蛋白酶的新型、以前未知的不可逆抑制作用。通过针对催化和非催化半胱氨酸的片段生长和反应性分析进行后续的合成优化,揭示了特异性的不可逆 3C 蛋白酶抑制作用。

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