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Enhanced anti-HIV-1 activity of G-quadruplexes comprising locked nucleic acids and intercalating nucleic acids

机译:包含锁定核酸和嵌入核酸的G-四链体的抗HIV-1活性增强

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Two G-quadruplex forming sequences, 5′-TGGGAG and the 17-mer sequence T30177, which exhibit anti-HIV-1 activity on cell lines, were modified using either locked nucleic acids (LNA) or via insertions of (R)-1-O-(pyren-1-ylmethyl)glycerol (intercalating nucleic acid, INA) or (R)-1-O-[4-(1-pyrenylethynyl)phenylmethyl]glycerol (twisted intercalating nucleic acid, TINA). Incorporation of LNA or INA/TINA monomers provide as much as 8-fold improvement of anti-HIV-1 activity. We demonstrate for the first time a detailed analysis of the effect the incorporation of INA/TINA monomers in quadruplex forming oligonucleotides (QFOs) and the effect of LNA monomers in the context of biologically active QFOs. In addition, recent literature reports and our own studies on the gel retardation of the phosphodiester analogue of T30177 led to the conclusion that this sequence forms a parallel, dimeric G-quadruplex. Introduction of the 5′-phosphate inhibits dimerisation of this G-quadruplex as a result of negative charge–charge repulsion. Contrary to that, we found that attachment of the 5′-O-DMT-group produced a more active 17-mer sequence that showed signs of aggregation—forming multimeric G-quadruplex species in solution. Many of the antiviral QFOs in the present study formed more thermally stable G-quadruplexes and also high-order G-quadruplex structures which might be responsible for the increased antiviral activity observed.
机译:使用锁定核酸(LNA)或通过插入(R)-1修饰了两个G-四链体形成序列5'-TGGGAG和17-mer序列T30177,它们在细胞系中表现出抗HIV-1活性-O-(吡喃-1-基甲基)甘油(插入核酸,INA)或(R)-1-O- [4-(1-苯乙炔基乙炔基)苯基甲基]甘油(扭曲的插入核酸,TINA)。 LNA或INA / TINA单体的掺入可将抗HIV-1活性提高多达8倍。我们首次展示了在四重链形成寡核苷酸(QFO)中掺入INA / TINA单体的效果以及在具有生物活性的QFO的情况下LNA单体的效果的详细分析。另外,最近的文献报道和我们自己对T30177的磷酸二酯类似物的凝胶延迟的研究得出的结论是,该序列形成了平行的,二聚的G-四链体。 5'-磷酸的引入由于负电荷排斥而抑制了G-四链体的二聚化。与此相反,我们发现5'-O-DMT-基团的附着产生了更具活性的17-mer序列,该序列显示出聚集的迹象-在溶液中形成多聚G-四链体。本研究中的许多抗病毒QFO形成了更热稳定的G-四链体以及高阶G-四链体结构,这些结构可能是所观察到的抗病毒活性增加的原因。

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