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Systematic Optimization and Modification of a DNA Aptamer with 2'-O-Methyl RNA Analogues

机译:具有2'-O-甲基RNA类似物的DNA适体的系统优化和修饰

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Nucleic acid aptamers (NAAs) are short synthetic DNA or RNA molecules that specifically fold into distinct three-dimensional structures able to specifically recognize a target. While NAAs show unprecedented promise in a variety of applications, including sensing, therapeutics and diagnostics, one major limitation involves the lack of stability towards omnipresent nucleases. Therefore, we herein report a systematic truncation and incorporation of 2'-O-methyl bases to a DNA aptamer, which results in increased stability without affecting affinity. One of the newly designed analogues is stable up to 24 hours, demonstrating that 2'-O-methyl RNA is an attractive modification to DNA aptamers, especially when theranostic applications are intended.
机译:核酸适体(NAAS)是短的合成DNA或RNA分子,这些分子专门折叠成能够专门识别靶标的不同的三维结构。 尽管NAA在各种应用中表现出前所未有的承诺,包括感应,治疗和诊断,但一个主要限制涉及缺乏无所不在的核酸酶的稳定性。 因此,我们在这里报告了2'-O-甲基碱基的系统截断和掺入DNA适体,这导致稳定性提高而不会影响亲和力。 新设计的类似物之一是稳定的24小时,表明2'-O-甲基RNA是对DNA适体的一种有吸引力的修饰,尤其是在打算使用Theranostic应用时。

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