碱基
DNA
核酸
肽核酸
序列(生物学)
识别序列
计算生物学
基因
生物
肽
功能(生物学)
遗传学
生物化学
限制性酶
作者
Masanari Shibata,Yuichiro Aiba,Masaki Hibino,Osami Shoji
标识
DOI:10.26434/chemrxiv-2022-wq3dm
摘要
The sequence-specific recognition of double-stranded DNA (dsDNA) is a key property for the control of DNA function. Peptide nucleic acid (PNA) can be utilised for the direct recognition of dsDNA via the formation of a unique invasion complex. Strand invasion by PNA induces local changes in the structure of dsDNA and is useful for the regulation of gene expression and genome editing. However, the fact that nucleobases modification is required for efficient invasion, has stymied the wide-spread application of PNA. Herein, we succeeded in the efficient recognition of target dsDNA sequences via formation of invasion complex by utilising only parallel-stranded and unmodified PNAs. This approach also streamlines synthesis by permitting the use of a peptide synthesiser rather than the manual synthesis we had been dependent upon for nucleobase-modified PNAs. Our new method also exhibited high sequence specificity and flexibility for target dsDNA sequences.
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