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The PNADNA hybrid I-motif: implications for sugarsugar contacts in i-motif tetramerization

机译:PNADNA杂种I-基序:i-基序四聚中糖接触的影响

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We have created a hybrid i-motif composed of two DNA and two peptide nucleic acid (PNA) strands from an equimolar mixture of a C-rich DNA and analogous PNA sequence. Nano-electrospray ionization mass spectrometry confirmed the formation of a tetrameric species, composed of PNA–DNA heteroduplexes. Thermal denaturation and CD experiments revealed that the structure was held together by C-H+-C base pairs. High resolution NMR spectroscopy confirmed that PNA and DNA form a unique complex comprising fiveC-H~+-C base pairs per heteroduplex. The imino protons are protected from D2O exchange suggesting intercalation of the heteroduplexes as seen in DNA4 i-motifs. FRET established the relative DNA and PNA strand polarities in the hybrid. The DNA strands were arranged antiparallel with respect to one another. The same topology was observed for PNA strands. Fluorescence quenching revealed that both PNA–DNA parallel heteroduplexes are intercalated, such that both DNA strands occupy one of the narrow grooves.H1'–H1' NOEs show that both heteroduplexes are fully intercalated and that both DNA strands are disposed towards a narrow groove, invoking sugar–sugar interactions as seen in DNA4 i-motifs. The hybrid i-motif shows enhanced thermal stability, intermediate pH dependence and forms at relatively low concentrations making it an ideal nanoscale structural element for pH-based molecular switches. It also serves as a good model system to assess the contribution of sugar–sugar contacts in i-motif tetramerization.
机译:我们已经从富含C的DNA和类似的PNA序列的等摩尔混合物中创建了由两个DNA和两个肽核酸(PNA)链组成的杂合i-基序。纳米电喷雾电离质谱法证实了由PNA-DNA异源双链体组成的四聚体物种的形成。热变性和CD实验表明,该结构由C-H + -C碱基对保持在一起。高分辨率NMR光谱证实,PNA和DNA形成一个独特的复合物,每个异源双链体包含五个C-H〜+ -C碱基对。亚氨基质子受到D2O交换的保护,表明异双链体的插入,如在DNA4 i-基序中看到的。 FRET在杂种中建立了相对的DNA和PNA链极性。 DNA链彼此反平行排列。对于PNA链观察到相同的拓扑。荧光淬灭表明,两条PNA-DNA平行异源双链体均被插入,从而两条DNA链均占据一条窄槽。H1'-H1'NOE显示两条异源双链体均已完全插入,两条DNA链均朝一条窄槽布置,就像在DNA4 i-基序中看到的糖-糖相互作用。混合型i-motif显示出增强的热稳定性,中等的pH依赖性,并且在较低浓度下形成,使其成为基于pH的分子开关的理想纳米级结构元素。它也是评估糖-糖接触在i-基序四聚反应中的作用的良好模型系统。

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