Gaynutdinov Timur I, Englund Ethan A, Appella Daniel H, Onyshchenko Mykola I, Neumann Ronald D, Panyutin Igor G
1 Department of Radiology and Imaging Sciences, Clinical Center, National Institutes of Health , Bethesda, Maryland.
Nucleic Acid Ther. 2015 Apr;25(2):78-84. doi: 10.1089/nat.2014.0517. Epub 2015 Feb 4.
Guanine (G)-rich DNA sequences can adopt four-stranded quadruplex conformations that may play a role in the regulation of genetic processes. To explore the possibility of targeted molecular recognition of DNA sequences with short G-rich peptide nucleic acids (PNA) and to assess the strand arrangement in such complexes, we used PNA and DNA with the Oxytricha nova telomeric sequence d(G4T4G4) as a model. PNA probes were complexed with DNA targets in the following forms: single-stranded oligonucleotides, a loop of DNA in a hairpin conformation, and as supercoiled plasmid with the (G4T4G4)/(C4A4C4) insert. Gel-shift mobility assays demonstrated formation of stable hybrid complexes between the homologous G4T4G4 PNA and DNA with multiple modes of binding. Chemical and enzymatic probing revealed sequence-specific and G-quadruplex dependent binding of G4T4G4 PNA to dsDNA. Spectroscopic and electrophoretic analysis of the complex formed between PNA and the synthetic DNA hairpin containing the G4T4G4 loop showed that the stoichiometry of a prevailing complex is three PNA strands per one DNA strand. We speculate how this new PNA-DNA complex architecture can help to design more selective, quadruplex-specific PNA probes.
富含鸟嘌呤(G)的DNA序列可形成四链体构象,这可能在遗传过程的调控中发挥作用。为了探索用短的富含G的肽核酸(PNA)对DNA序列进行靶向分子识别的可能性,并评估此类复合物中的链排列,我们使用PNA和具有嗜热四膜虫端粒序列d(G4T4G4)的DNA作为模型。PNA探针与DNA靶标以以下形式形成复合物:单链寡核苷酸、发夹构象的DNA环,以及带有(G4T4G4)/(C4A4C4)插入片段的超螺旋质粒。凝胶迁移率分析表明,同源的G4T4G4 PNA与DNA之间形成了具有多种结合模式的稳定杂交复合物。化学和酶促探测揭示了G4T4G4 PNA与双链DNA的序列特异性和G-四链体依赖性结合。对PNA与含有G4T4G4环的合成DNA发夹形成的复合物进行光谱和电泳分析表明,主要复合物的化学计量比是每一条DNA链对应三条PNA链。我们推测这种新的PNA-DNA复合结构如何有助于设计更具选择性的、针对四链体的PNA探针。