用胍g夹核碱基修饰的γ-PNA低聚物靶向双链DNA的序列特异性。

Heiko Kuhn, Bichismita Sahu, Srinivas Rapireddy, Danith H Ly, Maxim D Frank-Kamenetskii
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引用次数: 7

摘要

γ-PNA是一类新的肽核酸,有望克服以往双链DNA (dsDNA)靶向PNA的序列限制。为了检测γ-PNA的潜力,我们合成了一个生物素化的,带有三个胍- g夹核碱基的混合序列的五聚体γ-PNA。我们发现γ-PNA低聚物与dsDNA内完全互补的靶标发生的链入侵反应,其结合率明显高于与含有单一错配靶标的结合率。PNA低聚物与不匹配靶标的结合不会完全完成,而是达到60%或以下的固定水平,即使在非常低的离子强度条件下也是如此。随着盐浓度的增加,对匹配和不匹配靶标的初始结合率都急剧下降。我们证明了具有正确目标序列的线性DNA目标片段可以通过链霉亲和素涂覆磁珠的亲和力捕获从含有不匹配目标或不相关基因组DNA的DNA混合物中纯化出来。同样,从初始样品混合物中获得高纯度的超螺旋质粒DNA,其中包括具有完全互补序列的线性DNA片段。基于本研究获得的结果,我们认为γ-PNA具有很大的潜力,可以以不受序列限制的方式特异性靶向选定的双工DNA位点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Sequence specificity at targeting double-stranded DNA with a γ-PNA oligomer modified with guanidinium G-clamp nucleobases.

Sequence specificity at targeting double-stranded DNA with a γ-PNA oligomer modified with guanidinium G-clamp nucleobases.

Sequence specificity at targeting double-stranded DNA with a γ-PNA oligomer modified with guanidinium G-clamp nucleobases.

Sequence specificity at targeting double-stranded DNA with a γ-PNA oligomer modified with guanidinium G-clamp nucleobases.

γ-PNA, a new class of peptide nucleic acids, promises to overcome previous sequence limitations of double-stranded DNA (dsDNA) targeting with PNA. To check the potential of γ-PNA, we have synthesized a biotinylated, pentadecameric γ-PNA of mixed sequence carrying three guanidinium G-clamp nucleobases. We have found that strand invasion reactions of the γ-PNA oligomer to its fully complementary target within dsDNA occurs with significantly higher binding rates than to targets containing single mismatches. Association of the PNA oligomer to mismatched targets does not go to completion but instead reaches a stationary level at or below 60%, even at conditions of very low ionic strength. Initial binding rates to both matched and mismatched targets experience a steep decrease with increasing salt concentration. We demonstrate that a linear DNA target fragment with the correct target sequence can be purified from DNA mixtures containing mismatched target or unrelated genomic DNA by affinity capture with streptavidin-coated magnetic beads. Similarly, supercoiled plasmid DNA is obtained with high purity from an initial sample mixture that included a linear DNA fragment with the fully complementary sequence. Based on the results obtained in this study we believe that γ-PNA has a great potential for specific targeting of chosen duplex DNA sites in a sequence-unrestricted fashion.

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