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天然灵感来源的新型冠状病毒2抑制剂的设计与合成

Design and synthesis of naturally-inspired SARS-CoV-2 inhibitors.

作者信息

Hassan Haitham, Chiavaralli Jeanne, Hassan Afnan, Bedda Loay, Krischuns Tim, Chen Kuang-Yu, Li Alice Shi Ming, Delpal Adrien, Decroly Etienne, Vedadi Masoud, Naffakh Nadia, Agou Fabrice, Mallart Sergio, Arafa Reem K, Arimondo Paola B

机构信息

Institut Pasteur, Department of Structural Biology and Chemistry, CNRS UMR no 3523 Chem4Life, Epigenetic Chemical Biology, Université Paris Cité F-75015 Paris France

Institut Pasteur, Center for Technological Resources and Research (C2RT), CNRS UMR no 3523 Chem4Life, Chemogenomic and Biological Screening platform, Université Paris Cité F-75015 Paris France.

出版信息

RSC Med Chem. 2023 Jan 25;14(3):507-519. doi: 10.1039/d2md00149g. eCollection 2023 Mar 22.

Abstract

A naturally inspired chemical library of 25 molecules was synthesised guided by 3-D dimensionality and natural product likeness factors to explore a new chemical space. The synthesised chemical library, consisting of fused-bridged dodecahydro-2,6-epoxyazepino[3,4,5-,]indole skeletons, followed lead likeness factors in terms of molecular weight, C-sp fraction and Clog . Screening of the 25 compounds against lung cells infected with SARS-CoV-2 led to the identification of 2 hits. Although the chemical library showed cytotoxicity, the two hits (3b, 9e) showed the highest antiviral activity (EC values of 3.7 and 1.4 μM, respectively) with an acceptable cytotoxicity difference. Computational analysis based on docking and molecular dynamics simulations against main protein targets in SARS-CoV-2 (main protease M, nucleocapsid phosphoprotein, non-structural protein nsp10-nsp16 complex and RBD/ACE2 complex) were performed. The computational analysis proposed the possible binding targets to be either M or the nsp10-nsp16 complex. Biological assays were performed to confirm this proposition. A cell-based assay for M protease activity using a reverse-nanoluciferase (Rev-Nluc) reporter confirmed that 3b targets M. These results open the way towards further hit-to-lead optimisations.

摘要

在三维空间和天然产物相似性因素的指导下,合成了一个由25个分子组成的受自然启发的化学文库,以探索新的化学空间。合成的化学文库由稠合桥连十二氢-2,6-环氧氮杂环丁烷并[3,4,5-]吲哚骨架组成,在分子量、C-sp分数和ClogP方面符合类先导物因素。对25种化合物针对感染了SARS-CoV-2的肺细胞进行筛选,鉴定出2个活性化合物。尽管该化学文库显示出细胞毒性,但这两个活性化合物(3b、9e)表现出最高的抗病毒活性(EC值分别为3.7和1.4 μM),且细胞毒性差异可接受。基于对接和分子动力学模拟,对SARS-CoV-2中的主要蛋白质靶点(主要蛋白酶M、核衣壳磷蛋白、非结构蛋白nsp10-nsp16复合物和RBD/ACE2复合物)进行了计算分析。计算分析表明可能的结合靶点是M或nsp10-nsp16复合物。进行了生物学试验以证实这一推测。使用反向纳米荧光素酶(Rev-Nluc)报告基因进行的基于细胞的M蛋白酶活性测定证实3b作用于M。这些结果为进一步的活性化合物到先导物的优化开辟了道路。

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Design and synthesis of naturally-inspired SARS-CoV-2 inhibitors.天然灵感来源的新型冠状病毒2抑制剂的设计与合成
RSC Med Chem. 2023 Jan 25;14(3):507-519. doi: 10.1039/d2md00149g. eCollection 2023 Mar 22.

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