Probing the Dominant Motifs within the Hydrophobic Channel Yields Oxadiazole-Containing Diarylpyrimidine Derivatives as Potent HIV‑1 Non-Nucleoside Reverse Transcriptase Inhibitors
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https://figshare.com/articles/dataset/Probing_the_Dominant_Motifs_within_the_Hydrophobic_Channel_Yields_Oxadiazole-Containing_Diarylpyrimidine_Derivatives_as_Potent_HIV_1_Non-Nucleoside_Reverse_Transcriptase_Inhibitors/29596003
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To develop effective non-nucleoside reverse transcriptase inhibitors (NNRTIs) with improved antidrug resistance profiles and drug-like properties, a series of novel diarylpyrimidine derivatives targeting the hydrophobic domain of the NNRTI-binding pocket was strategically designed, synthesized, and evaluated. Following structural optimization, 18e (EC50 = 5.06–54.0 nM) emerged as the most potent inhibitor against wild-type and NNRTI-resistant strains, comparable to ETR (EC50 = 3.79–51.8 nM). In particular, for Y188L and RES056 mutant strains, 18e (EC50(Y188L) = 24.2 nM, RF = 4.79/EC50(RES056) = 54.0 nM, RF = 10.7) showed improved antiresistance profiles versus ETR (EC50(Y188L) = 23.4 nM, RF = 6.18/EC50(RES056) = 51.8 nM, RF = 13.7). Molecular simulation studies indicated that the 1,3,4-oxadiazolylpyridine motif was essential for binding to reverse transcriptase. Moreover, 18e exhibited promising pharmacokinetic properties (T1/2 = 2.35 h, F = 14.4%) and safety (LD50 < 2000 mg/kg), positioning it as a promising anti-HIV-1 drug candidate.
创建时间:
2025-07-18



