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通过合成后酰胺缩合制备具有氨基酸侧链的 DNA 三链结结构。

DNA three-way junction structures with amino acid side chains prepared via post-synthetic amide condensation.

机构信息

Department of Chemistry, Graduate School of Science, The University of Tokyo, Tokyo, Japan.

出版信息

Nucleosides Nucleotides Nucleic Acids. 2024;43(9):951-964. doi: 10.1080/15257770.2024.2314645. Epub 2024 Feb 15.

Abstract

DNA three-way junction (3WJ) structures with three amino acid side chains in the core have been synthesized post-synthetic DNA modification. Amide condensation reactions of oligonucleotides containing 2'-aminouridine with activated esters yielded DNA strands modified with His, Cys and Asp side chains to form modified 3WJs. Even a 3WJ with three negatively charged Asp side chains formed stably at room temperature. Furthermore, DNA hybridization alone placed two (His and Asp) and three (His, Cys, and Asp) side chains within the 3WJs, indicating that the DNA 3WJs are a useful platform for spatial arrangement of amino acid side chains.

摘要

已通过合成后 DNA 修饰合成了具有核心三个氨基酸侧链的 DNA 三链结(3WJ)结构。含 2'-氨基尿嘧啶的寡核苷酸与活化酯的酰胺缩合反应生成了带有 His、Cys 和 Asp 侧链的修饰 DNA 链,以形成修饰的 3WJ。即使是带有三个负电荷 Asp 侧链的 3WJ 也能在室温下稳定形成。此外,DNA 杂交单独将两个(His 和 Asp)和三个(His、Cys 和 Asp)侧链置于 3WJ 内,表明 DNA 3WJ 是氨基酸侧链空间排列的有用平台。

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