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Structure-guided approach identifies a novel class of HIV-1 ribonuclease H inhibitors: binding mode insights through magnesium complexation and site-directed mutagenesis studies

机译:结构指导的方法确定了一类新型的HIV-1核糖核酸酶H抑制剂:通过镁络合和定点诱变研究的结合模式见解

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摘要

Persistent HIV infection requires lifelong treatment and among the 2.1 million new HIV infections that occur every year there is an increased rate of transmitted drug-resistant mutations. This fact requires a constant and timely effort in order to identify and develop new HIV inhibitors with innovative mechanisms. The HIV-1 reverse transcriptase (RT) associated ribonuclease H (RNase H) is the only viral encoded enzyme that still lacks an efficient inhibitor despite the fact that it is a well-validated target whose functional abrogation compromises viral infectivity. Identification of new drugs is a long and expensive process that can be speeded up by in silico methods. In the present study, a structure-guided screening is coupled with a similarity-based search on the Specs database to identify a new class of HIV-1 RNase H inhibitors. Out of the 45 compounds selected for experimental testing, 15 inhibited the RNase H function below 100 μM with three hits exhibiting IC50 values <10 μM. The most active compound, >AA, inhibits HIV-1 RNase H with an IC50 of 5.1 μM and exhibits a Mg-independent mode of inhibition. Site-directed mutagenesis studies provide valuable insight into the binding mode of newly identified compounds; for instance, compound >AA involves extensive interactions with a lipophilic pocket formed by Ala502, Lys503, and Trp (406, 426 and 535) and polar interactions with Arg557 and the highly conserved RNase H primer-grip residue Asn474. The structural insights obtained from this work provide the bases for further lead optimization.
机译:持续性HIV感染需要终生治疗,并且在每年发生的210万新的HIV感染中,传播的耐药性突变发生率增加。这个事实需要持续及时的努力,以发现和开发具有创新机制的新型HIV抑制剂。与HIV-1逆转录酶(RT)相关的核糖核酸酶H(RNase H)是唯一仍缺乏有效抑制剂的病毒编码酶,尽管它是经过充分验证的靶标,其功能废除会损害病毒的感染性。新药的鉴定是一个漫长而昂贵的过程,可以通过计算机方法加快鉴定的速度。在本研究中,结构指导的筛选与在Specs数据库中基于相似度的搜索相结合,以确定一类新的HIV-1 RNase H抑制剂。在用于实验测试的45种化合物中,有15种将RNase H功能抑制在100μM以下,其中三个命中的IC50值均<10μM。活性最高的化合物> AA 抑制HIV-1 RNase H的IC50为5.1μM,并表现出与Mg无关的抑制模式。定点诱变研究为新鉴定化合物的结合模式提供了有价值的见解;例如,化合物> AA 涉及与Ala502,Lys503和Trp(406、426和535)形成的亲脂性口袋的广泛相互作用,以及与Arg557和高度保守的RNase H引物手柄残基Asn474的极性相互作用。 。从这项工作中获得的结构见解为进一步优化线索提供了基础。

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