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吲哚啉和咪唑烷酮稠合三环衍生物针对登革病毒复制和感染的设计、合成、发现及构效关系研究

Design, synthesis, discovery and SAR of the fused tricyclic derivatives of indoline and imidazolidinone against DENV replication and infection.

作者信息

Qian Weiyi, Xue Jian-Xia, Xu Jinxin, Li Feng, Zhou Guang-Feng, Wang Fang, Luo Rong-Hua, Liu Jinsong, Zheng Yong-Tang, Zhou Guo-Chun

机构信息

School of Pharmaceutical Sciences, Nanjing Tech University, Nanjing 211816, Jiangsu, China.

Medical College, Kunming University of Science and Technology, Kunming 650223, Yunnan, China; Key Laboratory of Animal Models and Human Disease Mechanisms of the Chinese Academy of Sciences/Key Laboratory of Bioactive Peptides of Yunnan Province, KIZ-CUHK Joint Laboratory of Bioresources and Molecular Research in Common Diseases, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming 650223, Yunnan, China.

出版信息

Bioorg Chem. 2022 Mar;120:105639. doi: 10.1016/j.bioorg.2022.105639. Epub 2022 Jan 24.

Abstract

Dengue virus, belonging to a genus Flavivirus, caused public health problem in recent years. One controversial vaccine of DENV was approved and there is no antiviral for the clinic treatment of DENV, therefore, efficient antivirals to DENV are of great medical significance. In this study, we conducted the design, synthesis, cell-based and target-based activity evaluation of 28 compounds based on indoline structural skeleton against DENV infection. Among them, 13 active compounds against DENV infection were discovered and their structure-activity relationship (SAR) was summarized. In this study, indoline carbohydrazine has derived more active compounds than indoline carboamide. It is discovered that TBS group exhibits a good pharmacophore to enhance anti-DENV activity. Further exploration indicated that post-treatment acts as effective time of addition and compound 15 targeting the post-entry stages of DENV2 viral life cycle. SPR imaging results support there are strong interaction of 13 and 15 with RdRp and compounds 13 and 15 reduce RdRp enzymatic activity, revealing that RdRp of DENV NS5 is the drug target for these series of compounds. Molecular docking deciphered the relationship of the structural feature with the putative binding mode by 13 and 15 with RdRp domain of DENV2 NS5 by hydrogen bonds and hydrophobic interactions to establish the fitted low energy conformation. Future studies will focus on designing more potent inhibitors for the treatment and prevention of dengue virus replication and infection, and understanding the more profound underlying structural features of inhibitors and drug action of the mechanism.

摘要

登革病毒属于黄病毒属,近年来引发了公共卫生问题。一种有争议的登革病毒疫苗已获批准,且临床上尚无抗登革病毒的抗病毒药物,因此,开发高效的抗登革病毒药物具有重大医学意义。在本研究中,我们基于吲哚啉结构骨架设计、合成了28种化合物,并对其进行了细胞水平和靶点水平的抗登革病毒感染活性评估。其中,发现了13种具有抗登革病毒感染活性的化合物,并总结了它们的构效关系。在本研究中,吲哚啉 carbohydrazine 衍生出的活性化合物比吲哚啉碳酰胺更多。发现叔丁基二甲基硅烷基(TBS)基团展现出良好的药效基团以增强抗登革病毒活性。进一步研究表明,后期处理是有效的添加时间,化合物15作用于登革病毒2型生命周期的进入后阶段。表面等离子体共振成像结果表明,化合物13和15与RNA依赖的RNA聚合酶(RdRp)有强烈相互作用,且化合物13和15降低了RdRp的酶活性,这表明登革病毒NS5的RdRp是这一系列化合物的药物靶点。分子对接通过氢键和疏水相互作用解析了化合物13和15与登革病毒2型NS5的RdRp结构域的结构特征与假定结合模式之间的关系,以建立拟合的低能量构象。未来的研究将集中于设计更有效的抑制剂用于治疗和预防登革病毒的复制和感染,并深入了解抑制剂更深刻的潜在结构特征和药物作用机制。

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