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人类免疫缺陷病毒1型成熟抑制剂PF-46396的构效关系

Structure-Activity Relationships of the Human Immunodeficiency Virus Type 1 Maturation Inhibitor PF-46396.

作者信息

Murgatroyd Christopher, Pirrie Lisa, Tran Fanny, Smith Terry K, Westwood Nicholas J, Adamson Catherine S

机构信息

School of Medicine, University of St Andrews, St Andrews, Fife, United Kingdom Biomedical Sciences Research Complex, University of St Andrews, St Andrews, Fife, United Kingdom.

School of Chemistry, University of St Andrews, St Andrews, Fife, United Kingdom Biomedical Sciences Research Complex, University of St Andrews, St Andrews, Fife, United Kingdom.

出版信息

J Virol. 2016 Aug 26;90(18):8181-97. doi: 10.1128/JVI.01075-16. Print 2016 Sep 15.

Abstract

UNLABELLED

HIV-1 maturation inhibitors are a novel class of antiretroviral compounds that consist of two structurally distinct chemical classes: betulinic acid derivatives and the pyridone-based compound PF-46396. It is currently believed that both classes act by similar modes of action to generate aberrant noninfectious particles via inhibition of CA-SP1 cleavage during Gag proteolytic processing. In this study, we utilized a series of novel analogues with decreasing similarity to PF-46396 to determine the chemical groups within PF-46396 that contribute to antiviral activity, Gag binding, and the relationship between these essential properties. A spectrum of antiviral activity (active, intermediate, and inactive) was observed across the analogue series with respect to CA-SP1 cleavage and HIV-1 (NL4-3) replication kinetics in Jurkat T cells. We demonstrate that selected inactive analogues are incorporated into wild-type (WT) immature particles and that one inactive analogue is capable of interfering with PF-46396 inhibition of CA-SP1 cleavage. Mutations that confer PF-46396 resistance can impose a defective phenotype on HIV-1 that can be rescued in a compound-dependent manner. Some inactive analogues retained the capacity to rescue PF-46396-dependent mutants (SP1-A3V, SP1-A3T, and CA-P157S), implying that they can also interact with mutant Gag. The structure-activity relationships observed in this study demonstrate that (i) the tert-butyl group is essential for antiviral activity but is not an absolute requirement for Gag binding, (ii) the trifluoromethyl group is optimal but not essential for antiviral activity, and (iii) the 2-aminoindan group is important for antiviral activity and Gag binding but is not essential, as its replacement is tolerated.

IMPORTANCE

Combinations of antiretroviral drugs successfully treat HIV/AIDS patients; however, drug resistance problems make the development of new mechanistic drug classes an ongoing priority. HIV-1 maturation inhibitors are novel as they target the Gag protein, specifically by inhibiting CA-SP1 proteolytic cleavage. The lack of high-resolution structural information of the CA-SP1 target in Gag has hindered our understanding of the inhibitor-binding pocket and maturation inhibitor mode of action. Therefore, we utilized analogues of the maturation inhibitor PF-46396 as chemical tools to determine the chemical components of PF-46396 that contribute to antiviral activity and Gag binding and the relationship between these essential properties. This is the first study to report structure-activity relationships of the maturation inhibitor PF-46396. PF-46396 is chemically distinct from betulinic acid-derived maturation inhibitors; therefore, our data provide a foundation of knowledge that will aid our understanding of how structurally distinct maturation inhibitors act by similar modes of action.

摘要

未标记

HIV-1成熟抑制剂是一类新型抗逆转录病毒化合物,由两个结构不同的化学类别组成:桦木酸衍生物和基于吡啶酮的化合物PF-46396。目前认为,这两类化合物的作用方式相似,通过在Gag蛋白水解加工过程中抑制CA-SP1裂解来产生异常的无感染性颗粒。在本研究中,我们使用了一系列与PF-46396相似度逐渐降低的新型类似物,以确定PF-46396中有助于抗病毒活性、Gag结合以及这些基本特性之间关系的化学基团。在Jurkat T细胞中,观察到该类似物系列在CA-SP1裂解和HIV-1(NL4-3)复制动力学方面具有一系列抗病毒活性(活性、中间活性和无活性)。我们证明,选定的无活性类似物被整合到野生型(WT)未成熟颗粒中,并且一种无活性类似物能够干扰PF-46396对CA-SP1裂解的抑制作用。赋予PF-46396抗性的突变可使HIV-1呈现缺陷表型,这种表型可通过化合物依赖性方式得到挽救。一些无活性类似物保留了挽救PF-46396依赖性突变体(SP1-A3V、SP1-A3T和CA-P157S)的能力,这意味着它们也可以与突变型Gag相互作用。本研究中观察到的构效关系表明:(i)叔丁基对于抗病毒活性至关重要,但不是Gag结合的绝对必要条件;(ii)三氟甲基对于抗病毒活性是最佳的,但不是必需的;(iii)2-氨基茚基对于抗病毒活性和Gag结合很重要,但不是必需的,因为其被取代是可以耐受的。

重要性

抗逆转录病毒药物联合使用成功治疗了HIV/AIDS患者;然而,耐药性问题使得开发新的作用机制药物类别一直是优先事项。HIV-1成熟抑制剂是新型药物,因为它们靶向Gag蛋白,具体是通过抑制CA-SP1蛋白水解裂解。Gag中CA-SP1靶点缺乏高分辨率结构信息,阻碍了我们对抑制剂结合口袋和成熟抑制剂作用方式的理解。因此,我们使用成熟抑制剂PF-46396的类似物作为化学工具,来确定PF-46396中有助于抗病毒活性和Gag结合的化学成分以及这些基本特性之间的关系。这是第一项报道成熟抑制剂PF-46396构效关系的研究。PF-46396在化学结构上与桦木酸衍生的成熟抑制剂不同;因此,我们的数据提供了一个知识基础,将有助于我们理解结构不同的成熟抑制剂如何通过相似的作用方式发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f14/5008107/eb44cdea8ea8/zjv9991819180001.jpg

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