整合酶
整合酶抑制剂
人类免疫缺陷病毒(HIV)
对偶(语法数字)
核糖核酸
计算生物学
双重角色
病毒学
化学
组合化学
医学
生物
抗逆转录病毒疗法
生物化学
基因
病毒载量
艺术
文学类
作者
Elisa Patacchini,Valentina Noemi Madia,Aurora Albano,Giuseppe De Ruggieri,Antonella Messore,Davide Ialongo,Francesco Saccoliti,Luigi Scipione,Sandro Cosconati,Pratibha C. Koneru,Reed Haney,Mamuka Kvaratskhelia,Roberto Di Santo,Roberta Costi
标识
DOI:10.1021/acsmedchemlett.4c00268
摘要
The HIV-1 integrase (IN) plays a critical role in the viral lifecycle by integrating the viral DNA into the host chromosome. The catalytic function of IN has been exploited as a target, with five drugs acting as active site binders (IN strand transfer inhibitors, INSTIs). However, IN mutations conferring low-level resistance to INSTIs have been reported. Therefore, new IN inhibitors with different mechanisms of action are needed. The allosteric inhibition of IN, exerted by allosteric IN inhibitors (ALLINIs), is gaining interest. ALLINIs inhibit IN by inducing aberrant IN multimerization with different mechanisms. Furthermore, recent discoveries unveiled that IN has an under-studied yet equally vital second function. This involves IN binding to the RNA genome in virions, necessary for proper virion maturation. In this work, we describe a series of quinolinonyl derivatives as inhibitors of both the IN catalytic functions and IN-RNA interactions, which impair both early and late steps of viral replication.
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