Synthetic Dual-Input Hybrid Riboswitches─Optimized Genetic Regulators in Yeast.

IF 3.7 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS ACS Synthetic Biology Pub Date : 2025-02-04 DOI:10.1021/acssynbio.4c00660
Daniel Kelvin, Janette Arias Rodriguez, Ann-Christin Groher, Kiara Petras, Beatrix Suess
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Abstract

Synthetic riboswitches, genetic regulatory elements composed entirely of RNA, have been engineered to control a variety of mechanisms at the level of both transcription and translation in all domains of life. The efficiency of riboswitch regulation can be increased by inserting two of them into an mRNA sequence in close proximity, resulting in a tandem riboswitch. The tandem state results in improved regulation beyond that of a single riboswitch by allowing both binding pockets to contribute to a higher dynamic range. The focus of this study was to create a novel tandem riboswitch design by integrating the binding pockets of two different riboswitches into one continuous structure, thereby creating a dual-input hybrid riboswitch. These hybrids remain compact in size with a shorter sequence length compared to a tandem riboswitch, while taking advantage of the binding pockets and scaffold sequences provided by both parental riboswitches. Through rational design, hybrid constructs derived from the combination of tetracycline-, tobramycin-, neomycin-, and paromomycin-binding riboswitches were engineered that significantly increase the dynamic range (e.g., from 14- to 36-fold for tobramycin) while increasing their expression levels in the absence of ligand (e.g., 28% to 68% expression for tetracycline). This study expands the toolbox of synthetic riboswitches and establishes general design guidelines applicable to similar riboswitches. Additionally, the dual-input state makes hybrid riboswitches an interesting target for the design of genetic regulators following Boolean logic.

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合成核糖开关是完全由 RNA 组成的基因调控元件,已被设计用于控制生命各领域转录和翻译水平的各种机制。通过在一个 mRNA 序列中插入两个相邻的核糖开关,形成串联核糖开关,可以提高核糖开关的调控效率。串联状态使两个结合口袋都能产生更大的动态范围,从而提高了调节效率,超过了单个核糖开关。本研究的重点是将两个不同核糖开关的结合口袋整合到一个连续结构中,从而创造出一种新型串联核糖开关设计。与串联式核糖开关相比,这些混合型核糖开关体积小巧,序列长度较短,同时利用了两个亲代核糖开关提供的结合口袋和支架序列。通过合理的设计,从四环素、妥布霉素、新霉素和对霉素结合的核糖开关组合中衍生出了杂交构建物,这些构建物显著提高了动态范围(例如,妥布霉素的动态范围从 14 倍提高到 36 倍),同时在没有配体的情况下提高了表达水平(例如,四环素的表达水平从 28% 提高到 68%)。这项研究拓展了合成核糖开关的工具箱,并建立了适用于类似核糖开关的一般设计准则。此外,双输入状态使混合核糖开关成为按照布尔逻辑设计遗传调节器的一个有趣目标。
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来源期刊
CiteScore
8.00
自引率
10.60%
发文量
380
审稿时长
6-12 weeks
期刊介绍: The journal is particularly interested in studies on the design and synthesis of new genetic circuits and gene products; computational methods in the design of systems; and integrative applied approaches to understanding disease and metabolism. Topics may include, but are not limited to: Design and optimization of genetic systems Genetic circuit design and their principles for their organization into programs Computational methods to aid the design of genetic systems Experimental methods to quantify genetic parts, circuits, and metabolic fluxes Genetic parts libraries: their creation, analysis, and ontological representation Protein engineering including computational design Metabolic engineering and cellular manufacturing, including biomass conversion Natural product access, engineering, and production Creative and innovative applications of cellular programming Medical applications, tissue engineering, and the programming of therapeutic cells Minimal cell design and construction Genomics and genome replacement strategies Viral engineering Automated and robotic assembly platforms for synthetic biology DNA synthesis methodologies Metagenomics and synthetic metagenomic analysis Bioinformatics applied to gene discovery, chemoinformatics, and pathway construction Gene optimization Methods for genome-scale measurements of transcription and metabolomics Systems biology and methods to integrate multiple data sources in vitro and cell-free synthetic biology and molecular programming Nucleic acid engineering.
期刊最新文献
Combinatorial Nonribosomal Peptide Synthetase Libraries Using the SEAM-Combi-OGAB Method. DRIMS: A Synthetic Biology Platform that Enables Deletion, Replacement, Insertion, Mutagenesis, and Synthesis of DNA. Synthetic Dual-Input Hybrid Riboswitches─Optimized Genetic Regulators in Yeast. Characterization of Rationally Designed CRISPR/Cas9-Based DNA Methyltransferases with Distinct Methyltransferase and Gene Silencing Activities in Human Cell Lines and Primary Human T Cells. Harnessing Non-standard Nucleic Acids for Highly Sensitive Icosaplex (20-Plex) Detection of Microbial Threats for Environmental Surveillance.
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