含假脱氧胞苷及其三磷酸衍生物的寡脱氧核苷酸的合成

Ryo Miyahara, Yosuke Taniguchi
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引用次数: 0

摘要

本文详细介绍了伪脱氧胞苷(ψdC)及其三磷酸衍生物(ψdCTP)的合成方案。这些分子被合成为识别DNA中iso-2'-脱氧鸟苷(iso-dG)的新化合物。Iso-dG是2-羟基-2′-脱氧腺苷(2-OH-dA)的互变异构体之一,被认为是一种氧化损伤的核碱基,其在DNA中的选择性识别有望在疾病的诊断和发病机制中发挥非常重要的作用。已知糖基化合物的羟基被硅基保护,然后在Mizorogi-Heck反应条件下与5-碘嘧啶偶联,经脱硅和非对映选择性还原得到ψdU。ψdU的内环氨基受到苄基的保护。随后,核碱基6位的羰基通过水氨处理被激活并转化为氨基。除去苯基,用苯甲酰保护外环氨基。一方面,在3 ‘和5 ’位置的硅基被去保护,转化为一个酰胺磷单元,并纳入到一个ODN中。另一方面,在酸性条件下,使用Van Boom试剂选择性地去保护5 '位置的羟基,然后直接转化为三磷酸。©2025作者。基本协议2:含有ψdC和ψ dctn的odn与2- oh - dabbasic协议3:含有2- oh - da的模板链上的单核苷酸引物延伸反应
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Synthesis of Oligodeoxynucleotide Containing Pseudo-Deoxycytidine and Its Triphosphate Derivative

Synthesis of Oligodeoxynucleotide Containing Pseudo-Deoxycytidine and Its Triphosphate Derivative

This article describes a detailed synthetic protocol for the preparation of oligodeoxynucleotide (ODN) containing pseudo-deoxycytidine (ψdC) and its triphosphate derivative (ψdCTP). These molecules were synthesized as novel compounds that recognize iso-2'-deoxyguanosine (iso-dG) in DNA. Iso-dG is one of the tautomers of 2-hydroxy-2'-deoxyadenosine (2-OH-dA), which is known as an oxidatively damaged nucleobase, and its selective recognition in DNA is expected to play a very important role in the diagnosis and pathogenesis of diseases. The hydroxyl groups of the known glycal compound were protected with silyl groups, and then coupled with 5-iodouracil under Mizorogi-Heck reaction conditions, yielding ψdU after desilylation and diastereoselective reduction. The endocyclic amino group of ψdU was protected by the benzyl group. Subsequently, the carbonyl group at the 6-position of the nucleobase was activated and converted to an amino group through treatment with aqueous ammonia. The benzyl group was removed, and the exocyclic amino group was protected with a benzoyl group. On one hand, the silyl groups at the 3’ and 5’ positions were deprotected, converted into a phosphoramidite unit, and incorporated into an ODN. On the other hand, the hydroxyl group at the 5’ position was selectively deprotected and then directly converted into the triphosphate using Van Boom's reagent under acidic conditions. © 2025 The Author(s). Current Protocols published by Wiley Periodicals LLC.

Basic Protocol 1: Synthesis of ODNs having ψdC and ψdCTP

Basic Protocol 2: Melting temperature of duplex formation between ODNs containing ψdC unit and 2-OH-dA

Basic Protocol 3: A single nucleotide primer extension reaction of ψdCTP for a template strand containing 2-OH-dA

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