Nichols Sara E, Domaoal Robert A, Thakur Vinay V, Tirado-Rives Julian, Anderson Karen S, Jorgensen William L
Interdepartmental Program in Computational Biology and Bioinformatics, Yale University, New Haven, Connecticut 06511, USA.
J Chem Inf Model. 2009 May;49(5):1272-9. doi: 10.1021/ci900068k.
To discover non-nucleoside inhibitors of HIV-1 reverse transcriptase (NNRTIs) that are effective against both wild-type (WT) virus and variants that encode the clinically troublesome Tyr181Cys (Y181C) RT mutation, virtual screening by docking was carried out using three RT structures and more than 2 million commercially available compounds. Two of the structures are for WT-virus with different conformations of Tyr181, while the third structure incorporates the Y181C modification. Eventually nine compounds were purchased and assayed. Three of the compounds show low-micromolar antiviral activity toward either or both the wild-type and Y181C HIV-1 strains. The study illustrates a viable protocol to seek anti-HIV agents with enhanced resistance profiles.
为了发现对野生型(WT)病毒和编码临床上棘手的Tyr181Cys(Y181C)逆转录酶突变的变体均有效的HIV-1逆转录酶非核苷抑制剂(NNRTIs),使用三种逆转录酶结构和超过200万种市售化合物进行了对接虚拟筛选。其中两种结构是针对Tyr181具有不同构象的野生型病毒,而第三种结构则包含Y181C修饰。最终购买并检测了九种化合物。其中三种化合物对野生型和Y181C HIV-1菌株中的一种或两种显示出低微摩尔抗病毒活性。该研究阐明了一种可行的方案,以寻找具有增强耐药性的抗HIV药物。