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核苷酸类似物干扰图谱分析

Nucleotide analog interference mapping.

作者信息

Suydam Ian T, Strobel Scott A

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut, USA.

出版信息

Methods Enzymol. 2009;468:3-30. doi: 10.1016/S0076-6879(09)68001-0.

Abstract

Nucleotide analog interference mapping (NAIM) is a powerful chemogenetic technique that rapidly identifies chemical groups essential for RNA function. Using a series of phosphorothioate-tagged nucleotide analogs, each carrying different modifications of nucleobase or backbone functionalities, it is possible to simultaneously, yet individually, assess the contribution of particular functional groups to an RNA's activity at every position within the molecule. In contrast to traditional mutagenesis, which modifies RNA on the nucleobase level, the smallest mutable unit in a NAIM analysis is a single atom, providing a detailed description of interactions at critical nucleotides. Because the method introduces modified nucleotides by in vitro transcription, NAIM offers a straightforward and efficient approach to study any RNA that has a selectable function, and it can be applied to RNAs of nearly any length.

摘要

核苷酸类似物干扰作图(NAIM)是一种强大的化学遗传学技术,可快速鉴定RNA功能所必需的化学基团。使用一系列带有硫代磷酸酯标记的核苷酸类似物,每个类似物携带不同的碱基或骨架功能修饰,可以同时但单独地评估特定官能团对分子内每个位置的RNA活性的贡献。与在碱基水平上修饰RNA的传统诱变不同,NAIM分析中最小的可变单元是单个原子,可详细描述关键核苷酸处的相互作用。由于该方法通过体外转录引入修饰的核苷酸,NAIM提供了一种直接且高效的方法来研究任何具有可选择功能的RNA,并且它可应用于几乎任何长度的RNA。

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