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适体结构的改变对于合成核糖开关工程至关重要。

Structural Changes in Aptamers are Essential for Synthetic Riboswitch Engineering.

机构信息

Department of Biology, Technical University of Darmstadt, Schnittspahnstraße 10, D-64287 Darmstadt, Germany. Electronic address: https://www.twitter.com/J_Hoetzel.

Department of Biology, Technical University of Darmstadt, Schnittspahnstraße 10, D-64287 Darmstadt, Germany; Center for Synthetic Biology, Technical University of Darmstadt, Germany.

出版信息

J Mol Biol. 2022 Sep 30;434(18):167631. doi: 10.1016/j.jmb.2022.167631. Epub 2022 May 17.

Abstract

Synthetic riboswitches are powerful tools in synthetic biology in which sensing and execution are consolidated in a single RNA molecule. By using SELEX to select aptamers in vitro, synthetic riboswitches can in theory be engineered against any ligand of choice. Surprisingly, very few in vitro selected aptamers have been used for the engineering of synthetic riboswitches. In-depth studies of these aptamers suggest that the key characteristics of such regulatory active RNAs are their structural switching abilities and their binding dynamics. Conventional SELEX approaches seem to be inadequate to select for these characteristics, which may explain the lack of in vitro selected aptamers suited for engineering of synthetic riboswitches. In this review, we explore the functional principles of synthetic riboswitches, identify key characteristics of regulatory active in vitro selected aptamers and integrate these findings in context with available in vitro selection methods. Based on these insights, we propose to use a combination of capture-SELEX and subsequent functional screening for a more successful in vitro selection of aptamers that can be applied for the engineering of synthetic riboswitches.

摘要

合成核糖开关是合成生物学中的强大工具,它将感应和执行功能整合在单个 RNA 分子中。通过使用 SELEX 在体外选择适体,理论上可以针对任何所需的配体来设计合成核糖开关。令人惊讶的是,很少有体外选择的适体被用于合成核糖开关的工程设计。对这些适体的深入研究表明,这些调节性活性 RNA 的关键特征是其结构切换能力和结合动力学。传统的 SELEX 方法似乎不足以选择这些特征,这可能解释了缺乏适合合成核糖开关工程设计的体外选择适体的原因。在这篇综述中,我们探讨了合成核糖开关的功能原理,确定了体外选择的调节性活性适体的关键特征,并将这些发现与现有的体外选择方法相结合。基于这些见解,我们建议使用捕获-SELEX 和随后的功能筛选相结合的方法,以更成功地体外选择适体,这些适体可用于合成核糖开关的工程设计。

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