François J C, Thuong N T, Hélène C
Laboratoire de Biophysique, INSERM U.201, CNRS U.A. 481, Paris.
Nucleic Acids Res. 1994 Sep 25;22(19):3943-50. doi: 10.1093/nar/22.19.3943.
The possibility of designing antisense oligodeoxynucleotides complementary to non-adjacent single-stranded sequences containing hairpin structures was studied using a DNA model system. The structure and stability of complexes formed by a 17mer oligonucleotide with DNA fragments containing hairpin structures was investigated by spectroscopic measurements (melting curves) and chemical reactions (osmium tetroxide reaction, copper-phenanthroline cleavage). A three-way junction was formed when the oligonucleotide was bound to both sides of the hairpin structure. When the complementary sequences of the two parts of the oligonucleotide were separated by a sequence which could not form a hairpin, the oligonucleotide exhibited a slightly weaker binding than to the hairpin-containing target. An oligodeoxynucleotide-phenanthroline conjugate was designed to form Watson-Crick base pairs with two single-stranded regions flanking a hairpin structure in a DNA fragment. In the presence of Cu2+ ions and a reducing agent, two main cleavage sites were observed at the end of the duplex structure formed by the oligonucleotide-phenanthroline conjugate with its target sequence. Competition experiments showed that both parts of the oligonucleotide must be bound in order to observe sequence-specific cleavage. Cleavage was still observed with target sequences which could not form a hairpin, provided the reaction was carried out at lower temperatures. These results show that sequence-specific recognition and modification (cleavage) can be achieved with antisense oligonucleotides which bind to non-adjacent sequences in a single-stranded nucleic acid.
利用DNA模型系统研究了设计与含有发夹结构的非相邻单链序列互补的反义寡脱氧核苷酸的可能性。通过光谱测量(熔解曲线)和化学反应(四氧化锇反应、铜-菲咯啉切割)研究了17聚体寡核苷酸与含有发夹结构的DNA片段形成的复合物的结构和稳定性。当寡核苷酸与发夹结构的两侧结合时形成了一个三向连接。当寡核苷酸两部分的互补序列被一个不能形成发夹的序列隔开时,寡核苷酸与含发夹的靶标的结合略弱。设计了一种寡脱氧核苷酸-菲咯啉缀合物,以与DNA片段中发夹结构两侧的两个单链区域形成沃森-克里克碱基对。在Cu2+离子和还原剂存在下,在寡核苷酸-菲咯啉缀合物与其靶序列形成的双链结构末端观察到两个主要切割位点。竞争实验表明,寡核苷酸的两部分都必须结合才能观察到序列特异性切割。只要反应在较低温度下进行,对于不能形成发夹的靶序列仍可观察到切割。这些结果表明,与单链核酸中不相邻序列结合的反义寡核苷酸可以实现序列特异性识别和修饰(切割)。