François J C, Saison-Behmoaras T, Hélène C
Muséum National d'Histoire Naturelle, INSERM U.201, Paris, France.
Nucleic Acids Res. 1988 Dec 23;16(24):11431-40. doi: 10.1093/nar/16.24.11431.
Homopyrimidine oligodeoxynucleotides recognize the major groove of the DNA double helix at homopurine.homopyrimidine sequences by forming local triple helices. The oligonucleotide is bound parallel to the homopurine strand of the duplex. This binding can be revealed by a footprinting technique using copper-phenanthroline as a cleaving reagent. Oligonucleotide binding in the major groove prevents cleavage by copper-phenanthroline. The cleavage patterns on opposite strands of the duplex at the boundaries of the triple helix are asymmetric. They are shifted to the 3'-side, indicating that the copper-phenanthroline chelate binds in the minor groove of the duplex structure. Binding of the chelate at the junction between the triple and the double helix is not perturbed on the 5'-side of the bound homopyrimidine oligonucleotide. In contrast, a strong enhancement of cleavage is observed on the purine-containing strand at the triplex-duplex junction on the 3'-side of the homopyrimidine oligonucleotide.
同嘧啶寡聚脱氧核苷酸通过形成局部三链螺旋,在同嘌呤-同嘧啶序列处识别DNA双螺旋的大沟。寡核苷酸与双链体的同嘌呤链平行结合。这种结合可以通过使用铜-菲咯啉作为切割试剂的足迹技术来揭示。在大沟中的寡核苷酸结合可防止铜-菲咯啉的切割。在三链螺旋边界处双链体相反链上的切割模式是不对称的。它们向3'侧偏移,表明铜-菲咯啉螯合物结合在双链体结构的小沟中。在结合的同嘧啶寡核苷酸的5'侧,三链和双链螺旋交界处的螯合物结合不受干扰。相反,在同嘧啶寡核苷酸3'侧的三链体-双链体交界处,含嘌呤链上的切割显著增强。