Silhár Peter, Hocek Michal, Pohl Radek, Votruba Ivan, Shih I-Hung, Mabery Eric, Mackman Richard
Institute of Organic Chemistry and Biochemistry, v.v.i., Academy of Sciences of the Czech Republic, Gilead Sciences & IOCB Research Center, Flemingovo nam. 2, CZ-16610 Prague 6, Czech Republic.
Bioorg Med Chem. 2008 Mar 1;16(5):2329-66. doi: 10.1016/j.bmc.2007.11.067. Epub 2007 Nov 29.
An efficient and facile synthesis of a large series of diverse 6-(N-substituted aminomethyl)-, 6-(O-substituted hydroxymethyl)- and 6-(S-substituted sulfanylmethyl)purine nucleosides (55 examples of both ribo- and 2'-deoxyribonucleosides), aimed at identifying novel homologues of natural nucleosides, was developed. The key transformation involved nucleophilic substitutions of Tol-protected 6-(mesyloxymethyl)purine nucleosides by primary or secondary amines, alcoholates or thiolates. While the 2'-deoxyribonucleosides were inactive, the ribonucleosides exerted considerable cytostatic effects and some anti-HCV activity with low selectivity.
为了鉴定天然核苷的新型同系物,开发了一种高效简便的方法来合成一系列多样的6-(N-取代氨甲基)-、6-(O-取代羟甲基)-和6-(S-取代硫代甲基)嘌呤核苷(55个核糖核苷和2'-脱氧核糖核苷实例)。关键转化步骤是通过伯胺、醇盐或硫醇盐对Tol保护的6-(甲磺酰氧基甲基)嘌呤核苷进行亲核取代。虽然2'-脱氧核糖核苷没有活性,但核糖核苷具有相当大的细胞抑制作用,并且具有一些低选择性的抗丙型肝炎病毒活性。