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通过辅助阻遏物结合位点对原核生物合成回路中的背景表达进行可调控和可调节的控制。

Regulatable and Modulable Background Expression Control in Prokaryotic Synthetic Circuits by Auxiliary Repressor Binding Sites.

作者信息

Merulla Davide, van der Meer Jan Roelof

机构信息

Department of Fundamental Microbiology, University of Lausanne , 1015 Lausanne, Switzerland.

出版信息

ACS Synth Biol. 2016 Jan 15;5(1):36-45. doi: 10.1021/acssynbio.5b00111. Epub 2015 Sep 14.

Abstract

Expression control in synthetic genetic circuitry, for example, for construction of sensitive biosensors, is hampered by the lack of DNA parts that maintain ultralow background yet achieve high output upon signal integration by the cells. Here, we demonstrate how placement of auxiliary transcription factor binding sites within a regulatable promoter context can yield an important gain in signal-to-noise output ratios from prokaryotic biosensor circuits. As a proof of principle, we use the arsenite-responsive ArsR repressor protein from Escherichia coli and its cognate operator. Additional ArsR operators placed downstream of its target promoter can act as a transcription roadblock in a distance-dependent manner and reduce background expression of downstream-placed reporter genes. We show that the transcription roadblock functions both in cognate and heterologous promoter contexts. Secondary ArsR operators placed upstream of their promoter can also improve signal-to-noise output while maintaining effector dependency. Importantly, background control can be released through the addition of micromolar concentrations of arsenite. The ArsR-operator system thus provides a flexible system for additional gene expression control, which, given the extreme sensitivity to micrograms per liter effector concentrations, could be applicable in more general contexts.

摘要

例如,在合成基因电路中,用于构建灵敏生物传感器的表达控制受到缺乏DNA元件的阻碍,这些元件要能保持超低背景,但在细胞通过信号整合后实现高输出。在这里,我们展示了在可调节启动子环境中放置辅助转录因子结合位点如何能显著提高原核生物传感器电路的信噪比输出比。作为原理验证,我们使用了来自大肠杆菌的对亚砷酸盐有反应的ArsR阻遏蛋白及其同源操纵子。在其靶启动子下游额外放置的ArsR操纵子可以以距离依赖的方式充当转录路障,并降低下游报告基因的背景表达。我们表明,转录路障在同源和异源启动子环境中均起作用。在其启动子上游放置的二级ArsR操纵子在保持效应物依赖性的同时也能提高信噪比输出。重要的是,可以通过添加微摩尔浓度的亚砷酸盐来解除背景控制。因此,ArsR-操纵子系统为额外的基因表达控制提供了一个灵活的系统,鉴于其对每升微克级效应物浓度的极端敏感性,该系统可应用于更广泛的背景中。

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