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平行取向的肽核酸与双链DNA形成入侵复合物。

Peptide nucleic acids in parallel orientation form invasion complexes with double-stranded DNA.

作者信息

Shibata Masanari, Sugimoto Hiroshi, Hibino Masaki, Shoji Osami, Aiba Yuichiro

机构信息

Department of Chemistry, Graduate School of Science, Nagoya University, Furo-cho Chikusa-ku Nagoya 464-8602 Japan

RIKEN SPring-8 Center 1-1-1 Kouto Sayo Hyogo 679-5148 Japan.

出版信息

RSC Chem Biol. 2025 Aug 21. doi: 10.1039/d5cb00172b.

Abstract

Peptide nucleic acid (PNA) is a unique class of synthetic nucleic acids with a pseudo-peptide backbone, known for its high nucleic acid recognition capability and its ability to directly recognize double-stranded DNA (dsDNA) the formation of a unique invasion complex. While most natural and artificial nucleic acids form duplexes in an antiparallel configuration due to the general instability of parallel configurations, PNA distinctively forms both antiparallel and parallel duplexes. In this study, we focused on this previously underexplored property of PNA to adopt a parallel duplex configuration and developed a novel double-duplex invasion strategy by leveraging the differences in thermal stability between the antiparallel and parallel orientations of PNA duplexes. Furthermore, we report the first crystal structure of a parallel PNA duplex, which was found to exhibit different structural features compared to the previously characterized antiparallel PNA duplex. This study highlights the potential of artificial nucleic acids in dsDNA recognition and demonstrates that the parallel architecture may serve as a conceptual foundation for advancing broader methodological innovations in nucleic acid research.

摘要

肽核酸(PNA)是一类独特的合成核酸,具有假肽主链,以其高核酸识别能力和直接识别双链DNA(dsDNA)形成独特侵入复合物的能力而闻名。虽然由于平行构型普遍不稳定,大多数天然和人工核酸以反平行构型形成双链体,但PNA独特地形成反平行和平行双链体。在本研究中,我们聚焦于PNA这种此前未被充分探索的采用平行双链构型的特性,并利用PNA双链反平行和平行取向之间热稳定性的差异,开发了一种新型双双链侵入策略。此外,我们报道了平行PNA双链的首个晶体结构,发现其与先前表征的反平行PNA双链相比呈现出不同的结构特征。这项研究突出了人工核酸在dsDNA识别中的潜力,并表明平行结构可能为推进核酸研究中更广泛的方法创新提供概念基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d4c/12400189/c61505eae808/d5cb00172b-f1.jpg

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