Kehlenbeck S, Betz U, Birkmann A, Fast B, Göller A H, Henninger K, Lowinger T, Marrero D, Paessens A, Paulsen D, Pevzner V, Schohe-Loop R, Tsujishita H, Welker R, Kreuter J, Rübsamen-Waigmann H, Dittmer F
Antiinfective Research, Virology, Pharma Research Center, Bayer HealthCare AG, D-42096 Wuppertal, Germany.
J Virol. 2006 Jul;80(14):6883-94. doi: 10.1128/JVI.00306-06.
We have identified dihydroxythiophenes (DHT) as a novel series of human immunodeficiency virus type 1 (HIV-1) integrase inhibitors with broad antiviral activities against different HIV isolates in vitro. DHT were discovered in a biochemical integrase high-throughput screen searching for inhibitors of the strand transfer reaction of HIV-1 integrase. DHT are selective inhibitors of integrase that do not interfere with virus entry, as shown by the inhibition of a vesicular stomatitis virus G-pseudotyped retroviral system. Moreover, in quantitative real-time PCR experiments, no effect on the synthesis of viral cDNA could be detected but rather an increase in the accumulation of 2-long-terminal-repeat cycles was detected. This suggests that the integration of viral cDNA is blocked. Molecular modeling and the structure activity relationship of DHT demonstrate that our compound fits into a two-metal-binding motif that has been suggested as the essential pharmacophore for diketo acid (DKA)-like strand transfer inhibitors (Grobler et al., Proc. Natl. Acad. Sci. USA 99:6661-6666, 2002.). This notion is supported by the profiling of DHT on retroviral vectors carrying published resistance mutations for DKA-like inhibitors where DHT showed partial cross-resistance. This suggests that DHT bind to a common site in the catalytic center of integrase, albeit with an altered binding mode. Taken together, our findings indicate that DHT are novel selective strand transfer inhibitors of integrase with a pharmacophore homologous to DKA-like inhibitors.
我们已确定二羟基噻吩(DHT)是一类新型的人类免疫缺陷病毒1型(HIV-1)整合酶抑制剂,在体外对不同的HIV分离株具有广泛的抗病毒活性。DHT是在一项生物化学整合酶高通量筛选中发现的,该筛选旨在寻找HIV-1整合酶链转移反应的抑制剂。如水泡性口炎病毒G假型逆转录病毒系统的抑制实验所示,DHT是整合酶的选择性抑制剂,不会干扰病毒进入。此外,在定量实时PCR实验中,未检测到对病毒cDNA合成的影响,反而检测到2-长末端重复序列循环的积累增加。这表明病毒cDNA的整合被阻断。DHT的分子建模和构效关系表明,我们的化合物符合一种双金属结合基序,该基序被认为是二酮酸(DKA)样链转移抑制剂的必需药效团(Grobler等人,《美国国家科学院院刊》99:6661-6666,2002年)。这一观点得到了DHT对携带已发表的DKA样抑制剂抗性突变的逆转录病毒载体的分析的支持,其中DHT表现出部分交叉抗性。这表明DHT结合到整合酶催化中心的一个共同位点,尽管结合模式有所改变。综上所述,我们的研究结果表明,DHT是新型的整合酶选择性链转移抑制剂,其药效团与DKA样抑制剂同源。