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Molecular Modeling of Quinoline-Based Compounds as Potential Dual Inhibitors of Reverse Transcriptase and Integrase of HIV

机译:喹啉类化合物作为HIV逆转录酶和整合酶的潜在双重抑制剂的分子模型

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As follow-up of our past publication [1], we propose that quinolones (as part of the pyridinone family) are capable to increase the number of interactions with HIV reverse transcriptase (RT) or integrase (IN) by adding a halogen in position C-8 of aromatic portion of the quinolones. This addition could help with the activity of dual inhibitors of RT and IN. In this work, we add a chlorine atom with the rationale to identify in the docking simulations a halogen interaction with the oxygen in the near aminoacids in the binding pockets of RT and IN enzymes. Our docking studies started with RT and 320 structures. Later, we took 73 structures with good results in docking with RT. The structures that we choose contain ester or acids groups in C-3 due the structural similarity with groups in charge to interact with the Mg~(++) ions in Elvitegravir. In conclusion, we obtained 14 structures that could occupy the allosteric pocket of RT and could inhibit the catalytic activity of IN, for this reason could be dual inhibitors. A major perspective of this work is the synthesis and testing of the potential dual inhibitors designed.
机译:作为我们过去出版物[1]的后续,我们建议喹诺酮(作为吡啶酮家族的一部分)能够通过在位置上添加卤素来增加与HIV逆转录酶(RT)或整合酶(IN)的相互作用数量。喹诺酮芳香部分的C-8。这种添加可以帮助RT和IN的双重抑制剂的活性。在这项工作中,我们添加了一个氯原子,其原理是在对接模拟中确定卤素与RT和IN酶结合口袋中近氨基酸中氧的相互作用。我们的对接研究从RT和320结构开始。后来,我们采用了73个结构,与RT的对接效果良好。由于与负责与Elvitegravir中的Mg〜(++)离子相互作用的基团的结构相似,我们选择的结构在C-3中包含酯基或酸基。总之,我们获得了14个结构,这些结构可能占据RT的变构口袋并抑制IN的催化活性,因此可能是双重抑制剂。这项工作的主要观点是所设计的潜在双重抑制剂的合成和测试。

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