He G X, Krawczyk S H, Swaminathan S, Shea R G, Dougherty J P, Terhorst T, Law V S, Griffin L C, Coutré S, Bischofberger N
Gilead Sciences, 353 Lakeside Drive, Foster City, California 94404, USA.
J Med Chem. 1998 Jun 18;41(13):2234-42. doi: 10.1021/jm970434d.
2'-Deoxyguanosine (G) analogues carrying various hydrophobic substituents in the N2 and C8 positions were synthesized and introduced through solid-phase synthesis into 15-mer oligodeoxynucleotide, GGTTGGTGTGGTTGG, which forms a chairlike structure consisting of two G-tetrads and is a potent thrombin inhibitor. The effects of the substitutions at N2 and C8 of the G-tetrad-forming G residues on the thrombin inhibitory activity are relatively small, suggesting that these substitutions cause relatively small perturbations on the chairlike structure formed by the oligodeoxynucleotide. Introduction of a benzyl group into N2 of G6 and G11 and naphthylmethyl groups into N2 of G6 increased the thrombin inhibitory activity, whereas other substituents in these positions had almost no effect or decreased the activity. Particularly, the oligodeoxynucleotide carrying a 1-naphthylmethyl group in the N2 position of G6 showed an increase in activity by about 60% both in vitro and in vivo. Substitutions on the N2 position of other G residues had little effect or decreased the activity. Introduction of a relatively small group, such as methyl and propynyl, into the C8 positions of G1, G5, G10, and G14 increased the activity, presumably due to the stabilization of a chairlike structure, whereas introduction of a large substituent group, phenylethynyl, decreased the activity, probably due to the steric hindrance.
合成了在N2和C8位置带有各种疏水取代基的2'-脱氧鸟苷(G)类似物,并通过固相合成将其引入15聚体寡脱氧核苷酸GGTTGGTGTGGTTGG中,该寡脱氧核苷酸形成由两个G-四联体组成的椅状结构,是一种有效的凝血酶抑制剂。G-四联体形成G残基的N2和C8位置的取代对凝血酶抑制活性的影响相对较小,这表明这些取代对寡脱氧核苷酸形成的椅状结构造成的扰动相对较小。在G6和G11的N2位置引入苄基以及在G6的N2位置引入萘甲基会增加凝血酶抑制活性,而这些位置的其他取代基几乎没有影响或降低了活性。特别地,在G6的N2位置带有1-萘甲基的寡脱氧核苷酸在体外和体内的活性均增加了约60%。其他G残基的N2位置的取代几乎没有影响或降低了活性。在G1、G5、G10和G14的C8位置引入相对较小的基团,如甲基和丙炔基,会增加活性,这可能是由于椅状结构的稳定,而引入大的取代基苯乙炔基则会降低活性,这可能是由于空间位阻。