Purmal' A A, Drutsa V L, Shabarova Z A
Bioorg Khim. 1984 Mar;10(3):394-400.
Novel compounds--modified DNA-duplexes containing 3'-5'-pyrophosphate internucleotide bonds--have been synthesized. The synthesis was carried out by means of chemical template-guided polycondensation of 3'-5'-diphosphate of decanucleotide pTGGCCAAGCTp, which forms DNA-like duplexes as a result of self-association. 1-Ethyl-3-(3'-dimethylaminopropyl)carbodiimide was used as a condensing agent. Almost quantitative yield of polymer products was achieved by incubation of the reaction mixture for 72 hours. The pyrophosphate type of the internucleotide bonds was confirmed by complete cleavage of these polymers by trifluoroacetic anhydride. The interaction of DNA-duplexes, containing the 3'-5'-pyrophosphate bonds, with restriction endonucleases BspI, HindIII and AluI was studied. BspI and HindIII were able to hydrolyze modified duplexes giving corresponding decanucleotides, whereas AluI failed to split the duplexes.
已合成了新型化合物——含有3'-5'-焦磷酸核苷酸间键的修饰DNA双链体。合成是通过十聚核苷酸pTGGCCAAGCTp的3'-5'-二磷酸的化学模板导向缩聚反应进行的,该二磷酸通过自缔合形成类似DNA的双链体。使用1-乙基-3-(3'-二甲氨基丙基)碳二亚胺作为缩合剂。通过将反应混合物孵育72小时,聚合物产物几乎达到定量产率。通过用三氟乙酸酐完全裂解这些聚合物,证实了核苷酸间键的焦磷酸类型。研究了含有3'-5'-焦磷酸键的DNA双链体与限制性内切酶BspI、HindIII和AluI的相互作用。BspI和HindIII能够水解修饰的双链体,产生相应的十聚核苷酸,而AluI未能切割双链体。