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首页> 外文期刊>Beilstein journal of organic chemistry. >Oligonucleotide analogues with cationic backbone linkages
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Oligonucleotide analogues with cationic backbone linkages

机译:具有阳离子主链的寡核苷酸类似物

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Their unique ability to selectively bind specific nucleic acid sequences makes oligonucleotides promising bioactive agents. However, modifications of the nucleic acid structure are an essential prerequisite for their application in vivo or even in cellulo. The oligoanionic backbone structure of oligonucleotides mainly hampers their ability to penetrate biological barriers such as cellular membranes. Hence, particular attention has been given to structural modifications of oligonucleotides which reduce their overall number of negative charges. One such approach is the site-specific replacement of the negatively charged phosphate diester linkage with alternative structural motifs which are positively charged at physiological pH, thus resulting in zwitterionic or even oligocationic backbone structures. This review provides a general overview of this concept and summarizes research on four according artificial backbone linkages: aminoalkylated phosphoramidates (and related systems), guanidinium groups, S -methylthiourea motifs, and nucleosyl amino acid (NAA)-derived modifications. The synthesis and properties of the corresponding oligonucleotide analogues are described.
机译:它们独特的选择性结合特定核酸序列的能力使寡核苷酸成为有希望的生物活性剂。然而,核酸结构的修饰是其在体内或什至在纤维素中应用的必要先决条件。寡核苷酸的寡阴离子主链结构主要阻碍其穿透生物屏障如细胞膜的能力。因此,已经特别关注寡核苷酸的结构修饰,其减少了其负电荷的总数。一种这样的方法是用在生理pH下带正电的替代结构基序特异性地取代带负电的磷酸二酯键,从而导致两性离子或什至寡阳离子主链结构。这篇综述提供了对该概念的一般概述,并总结了对四个相应的人工主链的研究:氨基烷基化的氨基磷酸酯(及相关系统),胍基,S-甲基硫脲基序和核糖基氨基酸(NAA)衍生的修饰。描述了相应的寡核苷酸类似物的合成和性质。

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