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三唑-腺苷类似物的合成及作为蛋白质精氨酸甲基转移酶 5 抑制剂的活性。

Synthesis and Activity of Triazole-Adenosine Analogs as Protein Arginine Methyltransferase 5 Inhibitors.

机构信息

Department of Pharmaceutical and Biomedical Sciences, College of Pharmacy, University of Georgia, Athens, GA 30602, USA.

出版信息

Molecules. 2022 Jun 11;27(12):3779. doi: 10.3390/molecules27123779.

Abstract

Protein arginine methyltransferase 5 (PRMT5) is an attractive molecular target in anticancer drug discovery due to its extensive involvement in transcriptional control, RNA processing, and other cellular pathways that are causally related to tumor initiation and progression. In recent years, various compounds have been screened or designed to target either the substrate- or cofactor-binding site of PRMT5. To expand the diversity of chemotypes for inhibitory binding to PRMT5 and other AdoMet-dependent methyltransferases, in this work, we designed a series of triazole-containing adenosine analogs aimed at targeting the cofactor-binding site of PRMT5. Triazole rings have commonly been utilized in drug discovery due to their ease of synthesis and functionalization as bioisosteres of amide bonds. Herein, we utilized the electronic properties of the triazole ring as a novel way to specifically target the cofactor-binding site of PRMT5. A total of about 30 compounds were synthesized using the modular alkyne-azide cycloaddition reaction. Biochemical tests showed that these compounds exhibited inhibitory activity of PRMT5 at varying degrees and several showed single micromolar potency, with clear selectivity for PRMT5 over PRMT1. Docking-based structural analysis showed that the triazole ring plays a key role in binding to the characteristic residue Phe327 in the active pocket of PRMT5, explaining the compounds' selectivity for this type-II enzyme. Overall, this work provides new structure-activity relationship information on the design of AdoMet analogs for selective inhibition of PRMT5. Further structural optimization work will further improve the potency of the top leads.

摘要

蛋白质精氨酸甲基转移酶 5(PRMT5)在抗癌药物发现中是一个有吸引力的分子靶标,因为它广泛参与转录控制、RNA 加工和其他与肿瘤起始和进展有因果关系的细胞途径。近年来,已经筛选或设计了各种化合物来靶向 PRMT5 的底物或辅因子结合位点。为了扩大抑制性结合 PRMT5 和其他 AdoMet 依赖性甲基转移酶的化学型多样性,在这项工作中,我们设计了一系列含有三唑的腺苷类似物,旨在靶向 PRMT5 的辅因子结合位点。三唑环由于其易于合成和作为酰胺键的生物等排体的功能化而常用于药物发现。在这里,我们利用三唑环的电子性质作为一种新的方法来特异性靶向 PRMT5 的辅因子结合位点。总共使用模块化炔烃-叠氮环加成反应合成了约 30 种化合物。生化测试表明,这些化合物在不同程度上表现出对 PRMT5 的抑制活性,其中几种化合物表现出单微摩尔的效力,对 PRMT5 具有明显的选择性,而对 PRMT1 则没有选择性。基于对接的结构分析表明,三唑环在与 PRMT5 活性口袋中特征性残基 Phe327 的结合中起关键作用,解释了这些化合物对这种 II 型酶的选择性。总体而言,这项工作为 AdoMet 类似物的设计提供了新的结构-活性关系信息,用于选择性抑制 PRMT5。进一步的结构优化工作将进一步提高顶级先导化合物的效力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7092/9228412/adb73e9e95a0/molecules-27-03779-g001.jpg

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