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序列选择性识别含有人工合成遗传元件的 DNA 双链的小沟。

Sequence-Selective Minor Groove Recognition of a DNA Duplex Containing Synthetic Genetic Components.

机构信息

Department of Pure and Applied Chemistry , University of Strathclyde , Thomas Graham Building, 295 Cathedral Street , Glasgow G1 1XL , United Kingdom.

出版信息

J Am Chem Soc. 2019 Jun 19;141(24):9555-9563. doi: 10.1021/jacs.8b12444. Epub 2019 Jun 4.

Abstract

The structural basis of minor groove recognition of a DNA duplex containing synthetic genetic information by hairpin pyrrole-imidazole polyamides is described. Hairpin polyamides induce a higher melting stabilization of a DNA duplex containing the unnatural P·Z base-pair when an imidazole unit is aligned with a P nucleotide. An NMR structural study showed that the incorporation of two isolated P·Z pairs enlarges the minor groove and slightly narrows the major groove at the site of this synthetic genetic information, relative to a DNA duplex consisting entirely of Watson-Crick base-pairs. Pyrrole-imidazole polyamides bind to a P·Z-containing DNA duplex to form a stable complex, effectively mimicking a G·C pair. A structural hallmark of minor groove recognition of a P·Z pair by a polyamide is the reduced level of allosteric distortion induced by binding of a polyamide to a DNA duplex. Understanding the molecular determinants that influence minor groove recognition of DNA containing synthetic genetic components provides the basis to further develop unnatural base-pairs for synthetic biology applications.

摘要

描述了发夹吡咯-咪唑聚酰胺识别含有合成遗传信息的 DNA 双链的结构基础。当咪唑单元与 P 核苷酸对齐时,发夹聚酰胺会诱导含有非天然 P·Z 碱基对的 DNA 双链的更高熔融稳定性。NMR 结构研究表明,与完全由 Watson-Crick 碱基对组成的 DNA 双链相比,掺入两个分离的 P·Z 对会在该合成遗传信息的部位扩大小沟,并略微缩小大沟。吡咯-咪唑聚酰胺与含有 P·Z 的 DNA 双链结合形成稳定的复合物,有效地模拟 G·C 对。聚酰胺识别 P·Z 对的小沟的结构特征是聚酰胺与 DNA 双链结合所诱导的变构扭曲程度降低。了解影响含合成遗传成分的 DNA 小沟识别的分子决定因素为进一步开发用于合成生物学应用的非天然碱基对提供了基础。

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