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通过虚拟筛选鉴定新型喹啉类 EHMT2/G9a 抑制剂。

Identification of novel quinoline inhibitor for EHMT2/G9a through virtual screening.

机构信息

Centre for Bioinformatics, Pondicherry University, Kalapet, Puducherry, 605014, India.

Department of Biotechnology, Pondicherry University, Kalapet, Puducherry, 605014, India.

出版信息

Biochimie. 2020 Jan;168:220-230. doi: 10.1016/j.biochi.2019.11.006. Epub 2019 Nov 20.

Abstract

G9a (also known as EHMT2 - Euchromatin histone methyltransferase 2) is a protein lysine methyltransferase which introduces methylation modification in variety of proteins including histones. G9a catalyzes the dimethylation of lysine 9 on histone 3 (H3K9me2) which is a repressive epigenetic modification. H3K9me2 is associated with the silencing of several genes including tumor suppressor genes in many cancers and hence G9a is a well characterized drug target for cancer therapy. Here, we report the discovery of CSV0C018875 as a novel quinoline based G9a inhibitor through virtual screening strategy from a HTS database. Sub-structure querying based on the known G9a inhibitors, followed by docking based virtual screening, led to the identification of CSV0C018875 as G9a inhibitor. We found that CSV0C018875 inhibits the activity of G9a in both enzyme and cell based assays. Importantly, the toxicity of CSV0C018875 is much lesser than that of the well-studied G9a inhibitor, BIX-01294. Molecular dynamics simulations shows that CSV0C018875 binds deeper inside the active site cavity of G9a, which facilitates the tight binding and also increases the compounds residence time, which in turn reflects better G9a inhibition. The novel quinoline CSV0C018875 could be further optimized to improve the ADME as well pharmacodynamic property.

摘要

G9a(也称为 EHMT2 - 染色质组蛋白甲基转移酶 2)是一种蛋白赖氨酸甲基转移酶,可在多种蛋白质中引入甲基化修饰,包括组蛋白。G9a 催化组蛋白 3(H3K9me2)赖氨酸 9 的二甲基化,这是一种抑制性表观遗传修饰。H3K9me2 与许多癌症中包括肿瘤抑制基因在内的几种基因的沉默有关,因此 G9a 是癌症治疗的一个特征明确的药物靶点。在这里,我们通过从高通量筛选数据库中进行虚拟筛选策略,报告了 CSV0C018875 作为一种新型喹啉基 G9a 抑制剂的发现。基于已知 G9a 抑制剂的亚结构查询,接着是基于对接的虚拟筛选,导致了 CSV0C018875 被鉴定为 G9a 抑制剂。我们发现 CSV0C018875 在酶和细胞基础测定中均抑制 G9a 的活性。重要的是,CSV0C018875 的毒性远小于研究得很好的 G9a 抑制剂 BIX-01294。分子动力学模拟表明,CSV0C018875 更深地结合在 G9a 的活性位点腔内,这促进了紧密结合,并增加了化合物的停留时间,从而反映出更好的 G9a 抑制作用。新型喹啉 CSV0C018875 可以进一步优化以改善 ADME 和药效学性质。

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