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利用生物元件工程模块化“ON”RNA 开关。

Engineering modular 'ON' RNA switches using biological components.

机构信息

Department of Chemistry and Biochemistry, University of Colorado, 596 UCB, Boulder, CO 80309-0596, USA.

出版信息

Nucleic Acids Res. 2013 Dec;41(22):10449-61. doi: 10.1093/nar/gkt787. Epub 2013 Sep 2.

Abstract

Riboswitches are cis-acting regulatory elements broadly distributed in bacterial mRNAs that control a wide range of critical metabolic activities. Expression is governed by two distinct domains within the mRNA leader: a sensory 'aptamer domain' and a regulatory 'expression platform'. Riboswitches have also received considerable attention as important tools in synthetic biology because of their conceptually simple structure and the ability to obtain aptamers that bind almost any conceivable small molecule using in vitro selection (referred to as SELEX). In the design of artificial riboswitches, a significant hurdle has been to couple the two domains enabling their efficient communication. We previously demonstrated that biological transcriptional 'OFF' expression platforms are easily coupled to diverse aptamers, both biological and SELEX-derived, using simple design rules. Here, we present two modular transcriptional 'ON' riboswitch expression platforms that are also capable of hosting foreign aptamers. We demonstrate that these biological parts can be used to facilely generate artificial chimeric riboswitches capable of robustly regulating transcription both in vitro and in vivo. We expect that these modular expression platforms will be of great utility for various synthetic biological applications that use RNA-based biosensors.

摘要

核糖开关是广泛分布在细菌 mRNA 中的顺式作用调控元件,可控制多种关键代谢活性。mRNA 前导区的两个不同结构域控制着表达:一个是感应“适体结构域”,另一个是调控“表达平台”。由于其结构简单,并且能够使用体外选择(称为 SELEX)获得结合几乎任何想象小分子的适体,因此核糖开关也作为合成生物学中的重要工具而受到了广泛关注。在人工核糖开关的设计中,一个重要的障碍是使两个结构域能够有效地进行通讯。我们之前证明,使用简单的设计规则,生物转录“OFF”表达平台可以轻松与各种适体(包括生物和 SELEX 衍生的适体)相连接。在这里,我们提出了两个模块化的转录“ON”核糖开关表达平台,它们也能够容纳外源适体。我们证明,这些生物元件可以用于方便地生成人工嵌合核糖开关,这些核糖开关能够在体外和体内稳健地调节转录。我们预计,这些模块化的表达平台将在使用 RNA 生物传感器的各种合成生物学应用中具有很大的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdca/3905868/be5b65b0bd01/gkt787f1p.jpg

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