Concentration-Dependent CsrA Regulation of the uxuB Transcript Leads to Development of a Post-Transcriptional Bandpass Filter.

IF 3.9 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS ACS Synthetic Biology Pub Date : 2025-04-18 Epub Date: 2025-04-09 DOI:10.1021/acssynbio.4c00668
Alejandra M Rojano-Nisimura, Trevor R Simmons, Alexandra J Lukasiewicz, Ryan Buchser, Josie S Ruzek, Jacqueline L Avila, Lydia M Contreras
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Abstract

Post-transcriptional control systems offer new avenues for designing synthetic circuits that provide reduced burden and fewer synthetic regulatory components compared to transcriptionally based tools. Herein, we repurpose a newly identified post-transcriptional interaction between the uxuB mRNA transcript, specifically the 5' UTR + 100 nucleotides of coding sequence (100 nt CDS), and the E. coli Carbon Storage Regulatory A (CsrA) protein to design a biological post-transcriptional bandpass filter. In this work, we characterize the uxuB mRNA as a heterogeneous target of CsrA, where the protein can both activate and repress uxuB activity depending on its intracellular concentration. We leverage this interaction to implement a novel strategy of regulation within the 5' UTR of an mRNA. Specifically, we report a hierarchical binding strategy that may be leveraged by CsrA within uxuB to produce a dose-dependent response in regulatory outcomes. In our semisynthetic circuit, the uxuB 5' UTR + 100 nt CDS sequence is used as a scaffold that is fused to a gene of interest, which allows the circuit to transition between ON/OFF states based on the concentration range of free natively expressed CsrA. Notably, this system exerts regulation comparable to previously developed transcriptional bandpass filters while reducing the number of synthetic circuit components and can be used in concert with additional post-transcriptionally controlled circuits to achieve complex multi-signal control. We anticipate that future characterization of native regulatory RNA-protein systems will enable the development of more complex RNP-based circuits for synthetic biology applications.

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uxuB转录物浓度依赖的CsrA调控导致转录后带通滤波器的发展。
转录后控制系统为设计合成电路提供了新的途径,与基于转录的工具相比,它提供了更低的负担和更少的合成调节成分。在此,我们重新利用新发现的uxuB mRNA转录物(特别是5' UTR + 100核苷酸编码序列(100 nt CDS))与大肠杆菌碳储存调节a (CsrA)蛋白之间的转录后相互作用来设计生物转录后带通过滤器。在这项工作中,我们将uxuB mRNA描述为CsrA的异质靶标,其中蛋白质可以根据其细胞内浓度激活和抑制uxuB活性。我们利用这种相互作用在mRNA的5' UTR内实现一种新的调控策略。具体来说,我们报告了一种分层结合策略,可以被uxuB中的CsrA利用,在调节结果中产生剂量依赖性反应。在我们的半合成电路中,uxuB 5' UTR + 100 nt CDS序列被用作融合到感兴趣基因的支架,这使得电路可以根据游离天然表达的CsrA的浓度范围在ON/OFF状态之间转换。值得注意的是,该系统的调节功能与先前开发的转录带通滤波器相当,同时减少了合成电路元件的数量,并且可以与额外的转录后控制电路一起使用,以实现复杂的多信号控制。我们预计,对天然调控rna -蛋白系统的未来表征将使合成生物学应用中更复杂的基于rna的电路的开发成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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.
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