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用于RNA检测及更多用途的荧光团/点亮型RNA适配体对的开发与应用

Development and Applications of Fluorogen/Light-Up RNA Aptamer Pairs for RNA Detection and More.

作者信息

Ryckelynck Michael

机构信息

Université de Strasbourg, CNRS, Architecture et Réactivité de l'ARN, UPR 9002, Strasbourg, France.

出版信息

Methods Mol Biol. 2020;2166:73-102. doi: 10.1007/978-1-0716-0712-1_5.

Abstract

The central role of RNA in living systems made it highly desirable to have noninvasive and sensitive technologies allowing for imaging the synthesis and the location of these molecules in living cells. This need motivated the development of small pro-fluorescent molecules called "fluorogens" that become fluorescent upon binding to genetically encodable RNAs called "light-up aptamers." Yet, the development of these fluorogen/light-up RNA pairs is a long and thorough process starting with the careful design of the fluorogen and pursued by the selection of a specific and efficient synthetic aptamer. This chapter summarizes the main design and the selection strategies used up to now prior to introducing the main pairs. Then, the vast application potential of these molecules for live-cell RNA imaging and other applications is presented and discussed.

摘要

RNA在生命系统中的核心作用使得人们非常渴望拥有非侵入性且灵敏的技术,以便能够对这些分子在活细胞中的合成及位置进行成像。这种需求推动了一类称为“荧光原”的小型荧光分子的开发,这类分子在与称为“点亮适体”的可遗传编码RNA结合后会发出荧光。然而,这些荧光原/点亮RNA对的开发是一个漫长而全面的过程,始于对荧光原的精心设计,随后是选择特定且高效的合成适体。本章在介绍主要的荧光原/点亮RNA对之前,总结了迄今为止所使用的主要设计和选择策略。然后,阐述并讨论了这些分子在活细胞RNA成像及其他应用方面的巨大应用潜力。

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