首页> 外文期刊>Nucleic Acids Research >Non-Watson-Crick interactions between PNA and DNA inhibit the ATPase activity of bacteriophage T4 Dda helicase
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Non-Watson-Crick interactions between PNA and DNA inhibit the ATPase activity of bacteriophage T4 Dda helicase

机译:PNA与DNA之间的非Watson-Crick相互作用抑制了噬菌体T4 Dda解旋酶的ATPase活性

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摘要

Peptide nucleic acid (PNA) is a DNA mimic in which the nucleobases are linked by an N-(2-aminoethyl) glycine backbone. Here we report that PNA can interact with single-stranded DNA (ssDNA) in a non-sequence-specific fashion. We observed that a 15mer PNA inhibited the ssDNA-stimulated ATPase activity of a bacteriophage T4 helicase, Dda. Surprisingly, when a fluorescein-labeled 15mer PNA was used in binding studies no interaction was observed between PNA and Dda. However, fluorescence polarization did reveal non-sequence-specific interactions between PNA and ssDNA. Thus, the inhibition of ATPase activity of Dda appears to result from depletion of the available ssDNA due to non-Watson-Crick binding of PNA to ssDNA. Inhibition of the ssDNA-stimulated ATPase activity was observed for several PNAs of varying length and sequence. To study the basis for this phenomenon, we examined self-aggregation by PNAs. The 15mer PNA readily self-aggregates to the point of precipitation. Since PNAs are hydrophobic, they aggregate more than DNA or RNA, making the study of this phenomenon essential for understanding the properties of PNA. Non-sequence-specific interactions between PNA and ssDNA were observed at moderate concentrations of PNA, suggesting that such interactions should be considered for antisense and antigene applications.
机译:肽核酸(PNA)是一种DNA模仿物,其中核碱基通过N-(2-氨乙基)甘氨酸骨架连接。在这里我们报告PNA可以以非序列特定的方式与单链DNA(ssDNA)相互作用。我们观察到15mer PNA抑制了噬菌体T4解旋酶Dda的ssDNA刺激的ATPase活性。出人意料的是,当将荧光素标记的15mer PNA用于结合研究时,在PNA和Dda之间未观察到相互作用。但是,荧光偏振确实揭示了PNA和ssDNA之间的非序列特异性相互作用。因此,Dda ATPase活性的抑制似乎是由于PNA与ssDNA的非Watson-Crick结合导致了可用ssDNA的耗尽。对于几种不同长度和序列的PNA,观察到了ssDNA刺激的ATPase活性的抑制。为了研究这种现象的基础,我们研究了PNA的自我聚集。 15mer PNA容易自聚集至沉淀点。由于PNA具有疏水性,因此它们的聚集比DNA或RNA多,因此对这种现象的研究对于理解PNA的性质至关重要。在中等浓度的PNA下观察到PNA与ssDNA之间的非序列特异性相互作用,这表明在反义和抗原应用中应考虑这种相互作用。

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