Robins M J, Wnuk S F, Yang X, Yuan C S, Borchardt R T, Balzarini J, De Clercq E
Department of Chemistry and Biochemistry, Brigham Young University, Provo, Utah 84602-5700, USA.
J Med Chem. 1998 Sep 24;41(20):3857-64. doi: 10.1021/jm980163m.
Treatment of a protected 9-(5, 6-dideoxy-beta-D-ribo-hex-5-ynofuranosyl)adenine derivative with silver nitrate and N-iodosuccinimide (NIS) and deprotection gave the 6'-iodo acetylenic nucleoside analogue 3c. Halogenation of 3-O-benzoyl-5,6-dideoxy-1, 2-O-isopropylidene-alpha-D-ribo-hex-5-enofuranose gave 6-halo acetylenic sugars that were converted to anomeric 1,2-di-O-acetyl derivatives and coupled with 6-N-benzoyladenine. These intermediates were deprotected to give the 6'-chloro 3a, 6'-bromo 3b, and 6'-iodo 3c acetylenic nucleoside analogues. Iodo compound 3c appears to inactivate S-adenosyl-L-homocysteine hydrolase by a type I ("cofactor depletion") mechanism since complete reduction of enzyme-bound NAD+ to NADH was observed and no release of adenine or iodide ion was detected. In contrast, incubation of the enzyme with the chloro 3a or bromo 3b analogues resulted in release of Cl- or Br- and Ade, as well as partial reduction of E-NAD+ to E-NADH. Compounds 3a, 3b, and 3c were inhibitory to replication of vaccinia virus, vesicular stomatitis virus, parainfluenza-3 virus, and reovirus-1 (3a < 3b < 3c, in order of increasing activity). The antiviral effects appear to correlate with type I mechanism-based inhibition of S-adenosyl-L-homocysteine hydrolase. Mechanistic considerations are discussed.
用硝酸银和N - 碘代琥珀酰亚胺(NIS)处理一种受保护的9 -(5,6 - 二脱氧 - β - D - 核糖 - 己 - 5 - 炔呋喃糖基)腺嘌呤衍生物并进行脱保护,得到6'-碘代炔基核苷类似物3c。3 - O - 苯甲酰基 - 5,6 - 二脱氧 - 1,2 - O - 异亚丙基 - α - D - 核糖 - 己 - 5 - 烯呋喃糖的卤化反应生成了6 - 卤代炔基糖,这些糖被转化为异头1,2 - 二 - O - 乙酰基衍生物,并与6 - N - 苯甲酰腺嘌呤偶联。这些中间体经过脱保护得到6'-氯代3a、6'-溴代3b和6'-碘代3c炔基核苷类似物。碘代化合物3c似乎通过I型(“辅因子耗竭”)机制使S - 腺苷 - L - 高半胱氨酸水解酶失活,因为观察到酶结合的NAD⁺完全还原为NADH,且未检测到腺嘌呤或碘离子的释放。相比之下,将该酶与氯代3a或溴代3b类似物一起孵育会导致Cl⁻或Br⁻以及腺嘌呤(Ade)的释放,同时E - NAD⁺部分还原为E - NADH。化合物3a、3b和3c对痘苗病毒、水疱性口炎病毒、副流感 - 3病毒和呼肠孤病毒 - 1的复制具有抑制作用(活性增强顺序为3a < 3b < 3c)。抗病毒作用似乎与基于I型机制对S - 腺苷 - L - 高半胱氨酸水解酶的抑制作用相关。文中讨论了相关的作用机制。