He Yanping, Chen Fener, Yu Xiongjie, Wang Yueping, De Clercq Erik, Balzarini Jan, Pannecouque Christophe
Department of Chemistry, Fudan University, Shanghai 200433, People's Republic of China.
Bioorg Chem. 2004 Dec;32(6):536-48. doi: 10.1016/j.bioorg.2004.05.007.
A series of 6-naphthylmethyl substituted S-alkylated dihydroalkoxybenzyloxopyrimidine (S-DABO) analogues with a beta-carbonyl group on the C-2 side chain were synthesized. All of the new compounds were evaluated for their anti-HIV activities in MT-4 cells. The most active compound, 5-isopropyl-2-[(4'-methoxyphenylcarbonyl-methyl)thio]-6-(1-naphthylmethyl)pyrimidin-4(3H)-one showed activity against HIV-1 and against the double mutated strain of HIV(Y181C and K103N) in the micromolar range. Furthermore, some of the compounds are active against both HIV-1 and HIV-2 in cell culture. In view of the fact that the loss of antiviral activity of these compounds when tested against S0561945 was much less pronounced than the loss of activity of typical NNRTIs, it is concluded that some of the compounds might interfere with another target or act on reverse transcriptase in a different way than the typical NNRTIs.
合成了一系列在C-2侧链上带有β-羰基的6-萘甲基取代的S-烷基化二氢烷氧基苄氧基嘧啶(S-DABO)类似物。对所有新化合物在MT-4细胞中进行了抗HIV活性评估。活性最高的化合物5-异丙基-2-[(4'-甲氧基苯基羰基甲基)硫代]-6-(1-萘甲基)嘧啶-4(3H)-酮在微摩尔范围内对HIV-1和HIV双突变株(Y181C和K103N)均有活性。此外,一些化合物在细胞培养中对HIV-1和HIV-2均有活性。鉴于这些化合物在针对S0561945进行测试时抗病毒活性的丧失比典型非核苷类逆转录酶抑制剂活性的丧失要轻得多,得出的结论是,一些化合物可能干扰另一个靶点,或以与典型非核苷类逆转录酶抑制剂不同的方式作用于逆转录酶。