Choi Yongseok, George Clifford, Comin Maria J, Barchi Joseph J, Kim Hak Sung, Jacobson Kenneth A, Balzarini Jan, Mitsuya Hiroaki, Boyer Paul L, Hughes Stephen H, Marquez Victor E
Laboratory of Medicinal Chemistry, Center for Cancer Research, National Cancer Institute-Frederick, National Institutes of Health, Frederick, Maryland 21702, USA.
J Med Chem. 2003 Jul 17;46(15):3292-9. doi: 10.1021/jm030116g.
The synthesis and biological evaluation of a bicyclo[3.1.0]hexene nucleoside designed as a conformational mimic of the anti-HIV agent stavudine (1, D4T) is described. The unsaturated methanocarbocyclic pseudosugar of N-MCD4T (2) was constructed from an iodo-substituted precursor by a DBU-catalyzed olefination reaction. Mitsunobu coupling with N(3)-benzoylthymine afforded the desired target after deprotection. Both D4T and N-MCD4T are in the North (N) hemisphere of the pseudorotational cycle but 70 degrees away from a perfect N (P = 0 degrees ) conformation toward the East and West hemispheres, respectively. Despite this large difference, the double bond reduces the puckering amplitude (nu(max)) of N-MCD4T to 6.81 degrees, and the superposition of both structures showed a RMS deviation of only 0.039 A. The combined structural analysis of P and nu(max) shows that while the value of P may differ substantially, the low nu(max) resolves the differences and becomes the dominant pseudorotational parameter. N-MCD4T is active against HIV-1 and HIV-2 in CEM, MT-2, and MT-4 cells, and while it is somewhat less potent than D4T, it also appears to be less toxic. The triphosphate (N-MCD4TTP) inhibits HIV reverse transcriptase with a 10-fold higher IC(50) than D4TTP. By virtue of its carbocyclic nature, N-MCD4T (2) is a more robust molecule stable to conditions that would cleave D4T.
本文描述了一种双环[3.1.0]己烯核苷的合成及其生物学评价,该核苷被设计为抗HIV药物司他夫定(1,D4T)的构象模拟物。N-MCD4T(2)的不饱和甲碳环假糖由碘代前体通过DBU催化的烯化反应构建而成。与N(3)-苯甲酰胸腺嘧啶进行 Mitsunobu 偶联反应,经脱保护后得到所需的目标产物。D4T和N-MCD4T均处于假旋转循环的北半球,但分别朝着东半球和西半球偏离完美的N(P = 0度)构象70度。尽管存在这种较大差异,但双键使N-MCD4T的褶皱幅度(ν(max))降低至6.81度,并且两种结构的叠加显示均方根偏差仅为0.039 Å。对P和ν(max)的综合结构分析表明,虽然P值可能有很大差异,但低ν(max)消除了这些差异并成为主要的假旋转参数。N-MCD4T在CEM、MT-2和MT-4细胞中对HIV-1和HIV-2具有活性,虽然其效力略低于D4T,但其毒性似乎也较低。三磷酸酯(N-MCD4TTP)抑制HIV逆转录酶的IC(50)比D4TTP高10倍。由于其碳环性质,N-MCD4T(2)是一种更稳定的分子,对会裂解D4T的条件具有抗性。