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Structural Properties of GT-Parallel Duplexes

机译:GT-平行双相体的结构性质

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摘要

The structure of G,T-parallel-stranded duplexes of DNA carrying similar amounts of adenine and guanine residues is studied by means of molecular dynamics (MD) simulations and UV- and CD spectroscopies. In addition the impact of the substitution of adenine by 8-aminoadenine and guanine by 8-aminoguanine is analyzed. The presence of 8-aminoadenine and 8-aminoguanine stabilizes the parallel duplex structure. Binding of these oligonucleotides to their target polypyrimidine sequences to form the corresponding G,T-parallel triplex was not observed. Instead, when unmodified parallel-stranded duplexes were mixed with their polypyrimidine target, an interstrand Watson-Crick duplex was formed. As predicted by theoretical calculations parallel-stranded duplexes carrying 8-aminopurines did not bind to their target. The preference for the parallel-duplex over the Watson-Crick antiparallel duplex is attributed to the strong stabilization of the parallel duplex produced by the 8-aminopurines. Theoretical studies show that the isomorphism of the triads is crucial for the stability of the parallel triplex.
机译:通过分子动力学(MD)模拟以及UV和CD光谱学研究了带有相似量腺嘌呤和鸟嘌呤残基的DNA的G,T平行链双链体的结构。此外,还分析了由8-氨基腺嘌呤取代腺嘌呤和由8-氨基鸟嘌呤取代鸟嘌呤的影响。 8-氨基腺嘌呤和8-氨基鸟嘌呤的存在稳定了平行双链体结构。没有观察到这些寡核苷酸与它们的靶聚嘧啶序列的结合以形成相应的G,T-平行三链体。相反,当未修饰的平行链双链体与它们的聚嘧啶靶标混合时,形成了链间沃森-克里克双链体。如理论计算所预测,带有8-氨基嘌呤的平行链双链体不结合其靶标。相对于Watson-Crick反平行双链体,平行双链体的偏爱归因于8-氨基嘌呤产生的平行双链体的强稳定性。理论研究表明,三单元组的同构性对于平行三链体的稳定性至关重要。

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