Sawai Hiroaki, Hirano Atushi, Mori Hiroyuki, Shinozuka Kazuo, Dong Beihua, Silverman Robert H
Department of Applied Chemistry, Faculty of Engineering, Gunma University, Kiryu, Gunma 376-8515 Japan.
J Med Chem. 2003 Nov 6;46(23):4926-32. doi: 10.1021/jm030035k.
A series of 8-azido- and 8-amino-substituted 2',5'-oligoadenylatyes was prepared by a uranyl-ion catalyzed polymerization of the corresponding 8-substituted adenosine phosphorimidazolide. Subsequent 5'-dephosphorylation of the resulting 5'-phosphoryl 2',5'-linked oligomers with alkaline phosphatase gave the corresponding core oligomers. The CD spectra indicated that the 8-aminoadenosine analogue of the 2',5'-linked trimer has an anti-orientation as in naturally occurring 2',5'-oligoadenylates, while 8-azido-substituted 2',5'-oligoadenylates have a syn-orientation. The 8-substituted oligomers showed enhanced resistance against digestion by snake venom phosphodiesterase. The 2',5'-linked 8-azidoadenylate trimer and tetramer displayed strong RNase L binding and activating ability, although the corresponding dimer is devoid of such activities. In contrast, very low or no RNase L binding and activating ability were observed in the 8-aminoadenosine analogue of 2',5'-oligoadenylates. Results indicate that the bulkiness and ionic character of the 8-substituting group have significant effects on the ability of these analogues to bind and activate RNase L. Furthermore, the orientation of the glycosidic base in the 2-5A analogues may change from syn to anti during binding to RNase L. The 8-azidoadenosine analogues of 2-5A will be useful tools in the photoaffinity labeling of RNase L, due to their strong RNase L binding ability. In addition, these 8-azidoadenosine compounds may be considered as candidates for experimental therapeutic agents because they have enhanced stability to enzyme degradation while retaining the ability to activate RNase L.
通过相应的8-取代腺苷磷酰咪唑化物的铀酰离子催化聚合反应,制备了一系列8-叠氮基和8-氨基取代的2',5'-寡腺苷酸。用碱性磷酸酶对所得的5'-磷酸基2',5'-连接的寡聚物进行后续的5'-去磷酸化反应,得到相应的核心寡聚物。圆二色光谱表明,2',5'-连接的三聚体的8-氨基腺苷类似物具有与天然存在的2',5'-寡腺苷酸相同的反式取向,而8-叠氮基取代的2',5'-寡腺苷酸具有顺式取向。8-取代的寡聚物对蛇毒磷酸二酯酶的消化具有增强的抗性。2',5'-连接的8-叠氮基腺苷酸三聚体和四聚体表现出很强的RNase L结合和激活能力,尽管相应的二聚体没有这种活性。相比之下,在2',5'-寡腺苷酸的8-氨基腺苷类似物中观察到非常低或没有RNase L结合和激活能力。结果表明,8-取代基团的体积和离子特性对这些类似物结合和激活RNase L的能力有显著影响。此外,2-5A类似物中糖苷碱基的取向在与RNase L结合过程中可能从顺式变为反式。2-5A的8-叠氮基腺苷类似物因其强大的RNase L结合能力,将成为RNase L光亲和标记的有用工具。此外,这些8-叠氮基腺苷化合物可被视为实验治疗剂的候选物,因为它们对酶降解具有增强的稳定性,同时保留了激活RNase L的能力。