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茶碱核糖开关的有效基因抑制的系统比较和合理设计。

Systematic Comparison and Rational Design of Theophylline Riboswitches for Effective Gene Repression.

机构信息

State Key Laboratory of Agricultural Microbiology & Hubei Hongshan Laboratory, College of Life Science and Technology, Huazhong Agricultural University, Wuhan, Hubei, People's Republic of China.

出版信息

Microbiol Spectr. 2023 Feb 14;11(1):e0275222. doi: 10.1128/spectrum.02752-22. Epub 2023 Jan 23.

Abstract

Riboswitches are promising regulatory tools in synthetic biology. To date, 25 theophylline riboswitches have been developed for regulation of gene expression in bacteria. However, no one has systematically evaluated their regulatory effects. To promote efficient selection and application of theophylline riboswitches, we examined 25 theophylline riboswitches in Escherichia coli MG1655 and found that they varied widely in terms of activation/repression ratios and expression levels in the absence of theophylline. Of the 20 riboswitches that activate gene expression, only one exhibited a high activation ratio (63.6-fold) and low expression level without theophylline. Furthermore, none of the five riboswitches that repress gene expression were more than 2.0-fold efficient. To obtain an effective repression system, we rationally designed a novel theophylline riboswitch to control a downstream gene or genes by premature transcription termination. This riboswitch allowed theophylline-dependent downregulation of the TurboRFP reporter in a dose- and time-dependent manner. Its performance profile exceeded those of previously described repressive theophylline riboswitches. We then introduced as the second part a RepA tag (protein degradation tag) coding sequence fused at the 5'-terminal end of the gene, which further reduced protein level, while not reducing the repressive effect of the riboswitch. By combining two tandem theophylline riboswitches with a RepA tag, we constructed a regulatory cassette that represses the expression of the gene(s) of interest at both the transcriptional and posttranslational levels. This regulatory cassette can be used to repress the expression of any gene of interest and represents a crucial step toward harnessing theophylline riboswitches and expanding the synthetic biology toolbox. A variety of gene expression regulation tools with significant regulatory effects are essential for the construction of complex gene circuits in synthetic biology. Riboswitches have received wide attention due to their unique biochemical, structural, and genetic properties. Here, we have not only systematically and precisely characterized the regulatory properties of previously developed theophylline riboswitches but also engineered a novel repressive theophylline riboswitch acting at the transcriptional level. By introducing coding sequences of a tandem riboswitch and a RepA protein degradation tag at the 5' end of the reporter gene, we successfully constructed a simple and effective regulatory cassette for gene regulation. Our work provides useful biological components for the construction of synthetic biology gene circuits.

摘要

核糖开关是合成生物学中有前景的调控工具。迄今为止,已经开发了 25 种茶碱核糖开关来调控细菌中的基因表达。然而,还没有人系统地评估它们的调控效果。为了促进茶碱核糖开关的高效选择和应用,我们在大肠杆菌 MG1655 中检测了 25 种茶碱核糖开关,发现它们在没有茶碱的情况下,激活/抑制比和表达水平差异很大。在 20 种激活基因表达的核糖开关中,只有一种在没有茶碱的情况下表现出高激活比(63.6 倍)和低表达水平。此外,没有一种抑制基因表达的核糖开关的效率超过 2.0 倍。为了获得有效的抑制系统,我们通过提前转录终止,合理设计了一种新型的茶碱核糖开关来控制下游基因或多个基因。该核糖开关允许 TurboRFP 报告基因在依赖茶碱的方式下进行剂量和时间依赖性下调。它的性能优于以前描述的抑制性茶碱核糖开关。然后,我们引入了第二个部分,即在 5'端融合了 RepA 标签(蛋白降解标签)编码序列,进一步降低了蛋白水平,而不降低核糖开关的抑制作用。通过将两个串联的茶碱核糖开关与 RepA 标签结合,我们构建了一个调节盒,可以在转录和翻译后水平上抑制感兴趣基因的表达。这个调节盒可以用来抑制任何感兴趣基因的表达,是利用茶碱核糖开关和扩展合成生物学工具包的重要一步。在合成生物学中,构建复杂的基因电路需要具有显著调控效果的各种基因表达调控工具。由于其独特的生化、结构和遗传特性,核糖开关受到了广泛关注。在这里,我们不仅系统而精确地描述了以前开发的茶碱核糖开关的调控特性,还设计了一种新型的转录水平抑制性茶碱核糖开关。通过在报告基因的 5'端引入串联核糖开关和 RepA 蛋白降解标签的编码序列,我们成功构建了一种简单有效的基因调控调节盒。我们的工作为合成生物学基因电路的构建提供了有用的生物元件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7543/9927458/c403a957f47e/spectrum.02752-22-f001.jpg

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