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Strand-invasion of duplex DNA by peptide nucleic acid oligomers.

机译:肽核酸寡聚物对双链DNA的链侵袭。

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摘要

Polyamide oligomers, termed peptide nucleic acids (PNAs), bind with high affinity to both DNA and RNA and offer both antisense and antigene approaches for regulating gene expression. When a PNA binds to a complementary sequence in a double-stranded DNA, one strand of the duplex is displaced, and a stable D-loop is formed. Unlike oligodeoxynucleotides for which binding polarity is determined by the deoxyribose sugar, the unrestrained polyamide backbone of the PNA could permit binding to a DNA target in an orientation-independent manner. We now provide evidence that PNAs can, in fact, bind to their complementary sequence in DNA independent of the DNA-strand polarity--that is, a PNA binds to DNA in both "parallel" and "antiparallel" fashion. With a mixed-sequence 15-mer PNA, kinetic studies of PNA.DNA interactions revealed that D-loop formation was rapid and the complex was stable for several hours. However, when measured either by gel-mobility-shift analysis or RNA polymerase II-elongation termination, D-loop formation was salt dependent, but PNA-strand dissociation was not salt dependent. We observed that D-loop-containing DNA fragments had anomalous gel mobilities that varied as a function of the position of the D-loop relative to the DNA termini. On the basis of permutation analysis, the decreased mobility of the PNA.DNA complex was attributed to a bend in the DNA at or near the D-loop.
机译:聚酰胺低聚物(称为肽核酸(PNA))与DNA和RNA都具有高亲和力,并提供了反义和反抗原方法来调节基因表达。当PNA与双链DNA中的互补序列结合时,双链体的一条链被置换,并形成稳定的D环。与寡聚脱氧核苷酸的结合极性由脱氧核糖确定的不同,PNA的不受约束的聚酰胺主链可以允许以方向独立的方式与DNA靶标结合。现在,我们提供证据表明PNA实际上可以与DNA中的互补序列结合,而与DNA链的极性无关-也就是说,PNA可以“平行”和“反平行”方式与DNA结合。使用15聚体PNA混合序列,对PNA.DNA相互作用的动力学研究表明,D环形成迅速,复合物稳定了几个小时。但是,通过凝胶迁移率分析或RNA聚合酶II延伸终止测定时,D环的形成与盐有关,但PNA链解离与盐无关。我们观察到,含有D环的DNA片段具有异常的凝胶迁移率,该迁移率随D环相对于DNA末端的位置而变化。在排列分析的基础上,PNA.DNA复合物迁移率降低归因于D环处或附近的DNA弯曲。

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