Integrated Computational Analysis of C-2 Substituted Pyrazolopyrimidine and Amide Isosteres ALLINI: 3D-QSAR, Molecular Docking, and ADMET Studies.

IF 0.8 4区 医学 Q4 IMMUNOLOGY
Aakanksha Kunwar, Gondaliya Krishna N, Vijay M Khedkar, Prakash C Jha
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引用次数: 0

Abstract

Introduction: The rapid increase in incidences of drug resistance and off-target toxicity in the case of Human Immunodeficiency Virus (HIV) has increased the demand for drugs with fewer side effects. HIV-1 Integrase (IN) is a promising target that helps integrate viral DNA with human DNA. It acts as a target for strand transfer inhibitors. However, the emergence of resistant mutations in the proteins necessitates the exploration of potent allosteric drugs. The allosteric integrase inhibitors (ALLINI) that interrupt the association of the integrase binding domain of the lens epithelium growth factor (LEDGF/p75) and LEDGF/p75 binding site of the IN are more promising as they hinder site specificity and viral replication.

Objective: In this study, a 3D-QSAR, molecular docking, and ADMET were carried out to investigate the binding of the C2-pyrazolopyrimidine amides and amide isosteres.

Method: The 3D-QSAR model was developed using a series of 24 C-2 substituted pyrazolopyrimidine and amide isosteres. A statistically significant model was constructed, showing the determination coefficient (r2) and five-fold cross-validation (q2) at 0.946 and 0.506, respectively. Furthermore, the contour maps of the electrostatic potential and van der Waals coefficient provided structural modifications in the features to improve the inhibitory activity.

Result: A molecular docking study was also performed to check the binding of the compounds to the LEDGF/p75 binding site of the IN, along with ADMET evaluation.

Conclusion: The outcome of the study will help to prepare the potent molecules with enhanced allosteric inhibitory activity.

C-2取代吡唑嘧啶和酰胺同位异构体的综合计算分析ALLINI: 3D-QSAR,分子对接和ADMET研究。
导论:人类免疫缺陷病毒(HIV)的耐药性和脱靶毒性发生率的迅速增加,增加了对副作用较小的药物的需求。HIV-1整合酶(IN)是一个很有前途的靶标,有助于将病毒DNA与人类DNA整合。它作为链转移抑制剂的靶标。然而,耐药突变在蛋白质的出现需要探索强效变构药物。可阻断晶状体上皮生长因子(LEDGF/p75)整合酶结合域和IN的LEDGF/p75结合位点的变弹性整合酶抑制剂(ALLINI)更有前景,因为它们阻碍了位点特异性和病毒复制。目的:本研究采用3D-QSAR、分子对接、ADMET等方法研究c2 -吡唑嘧啶酰胺及其同位异构体的结合。方法:采用24个C-2取代吡唑嘧啶和酰胺同分酯建立3D-QSAR模型。建立具有统计学显著性的模型,决定系数(r2)为0.946,五重交叉验证(q2)为0.506。此外,静电电位和范德华系数的等高线图提供了结构上的修饰,以提高抑制活性。结果:还进行了分子对接研究,以检查化合物与IN的LEDGF/p75结合位点的结合,并进行ADMET评估。结论:本研究结果将有助于制备具有增强变构抑制活性的强效分子。
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来源期刊
Current HIV Research
Current HIV Research 医学-病毒学
CiteScore
1.90
自引率
10.00%
发文量
81
审稿时长
6-12 weeks
期刊介绍: Current HIV Research covers all the latest and outstanding developments of HIV research by publishing original research, review articles and guest edited thematic issues. The novel pioneering work in the basic and clinical fields on all areas of HIV research covers: virus replication and gene expression, HIV assembly, virus-cell interaction, viral pathogenesis, epidemiology and transmission, anti-retroviral therapy and adherence, drug discovery, the latest developments in HIV/AIDS vaccines and animal models, mechanisms and interactions with AIDS related diseases, social and public health issues related to HIV disease, and prevention of viral infection. Periodically, the journal invites guest editors to devote an issue on a particular area of HIV research of great interest that increases our understanding of the virus and its complex interaction with the host.
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