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Mechanism of interaction of novel indolylarylsulfone derivatives with K103N and Y181I mutant HIV-1 reverse transcriptase in complex with its substrates.

机译:新型吲哚基芳基砜衍生物与K103N和Y181I突变HIV-1逆转录酶及其底物复合物的相互作用机理。

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摘要

Background: Novel indolylarylsulfones (IASs), designed through rational structure-based molecular modelling and docking approaches, have been recently characterized as effective inhibitors of the wild-type and drug-resistant mutant HIV-1 reverse transcriptase (RT). Methods: Here, we studied the interaction of selected halo- and nitro-substituted IAS derivatives, with the RT enzyme carrying the single resistance mutations K103N and Y181I through steady-state kinetic experiments. Results: The studied compounds exhibited high selectivity to the mutant RT in complex with its substrates, behaving as uncompetitive inhibitors. The presence of the K103N mutation, and to a lesser extent the Y181I, stabilized the drug interactions with the viral RT, when both its substrates were bound. Conclusions: The characterization of these mutation-specific effects on inhibitor binding might be relevant to the design of more effective new generation non-nucleoside reverse transcriptase inhibitors, with better resilience towards drug resistant mutants.
机译:背景:通过合理的基于结构的分子建模和对接方法设计的新型吲哚基芳基砜(IAS)最近已被表征为野生型和耐药性突变型HIV-1逆转录酶(RT)的有效抑制剂。方法:在这里,我们通过稳态动力学实验研究了选定的卤素和硝基取代的IAS衍生物与带有单一抗性突变K103N和Y181I的RT酶的相互作用。结果:所研究的化合物对突变型RT及其底物具有高选择性,表现为非竞争性抑制剂。当结合两个底物时,K103N突变和较小程度的Y181I的存在稳定了药物与病毒RT的相互作用。结论:这些对抑制剂结合的突变特异性作用的表征可能与更有效的新一代非核苷逆转录酶抑制剂的设计有关,并且对耐药突变体具有更好的适应性。

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