Sonntag Christiane Katharina, Flachbart Lion Konstantin, Maass Celine, Vogt Michael, Marienhagen Jan
Institute of Bio- and Geosciences, IBG-1: Biotechnology, Forschungszentrum Jülich, D-52425, Jülich, Germany.
Institute of Biotechnology, RWTH Aachen University, Worringer Weg 3, D-52074, Aachen, Germany.
Metab Eng Commun. 2020 Oct 16;11:e00150. doi: 10.1016/j.mec.2020.e00150. eCollection 2020 Dec.
In recent years, transcriptional biosensors have become valuable tools in metabolic engineering as they allow semiquantitative determination of metabolites in single cells. Although being perfectly suitable tools for high-throughput screenings, application of transcriptional biosensors is often limited by the intrinsic characteristics of the individual sensor components and their interplay. In addition, biosensors often fail to work properly in heterologous host systems due to signal saturation at low intracellular metabolite concentrations, which typically limits their use in high-level producer strains at advanced engineering stages. We here introduce a biosensor design, which allows fine-tuning of important sensor parameters and restores the sensor response in a heterologous expression host. As a key feature of our design, the regulator activity is controlled through the expression level of the respective gene by different (synthetic) constitutive promoters selected for the used expression host. In this context, we constructed biosensors responding to basic amino acids or ring-hydroxylated phenylpropanoids for applications in and . Detailed characterization of these biosensors in liquid cultures and during single-cell analysis using flow cytometry showed that the presented sensor design enables customization of important biosensor parameters as well as application of these sensors in relevant heterologous hosts.
近年来,转录生物传感器已成为代谢工程中有价值的工具,因为它们能够对单细胞中的代谢物进行半定量测定。尽管转录生物传感器是高通量筛选的理想工具,但其应用常常受到单个传感器组件的固有特性及其相互作用的限制。此外,由于在低细胞内代谢物浓度下信号饱和,生物传感器在异源宿主系统中常常无法正常工作,这通常限制了它们在高级工程阶段的高产量生产菌株中的应用。我们在此介绍一种生物传感器设计,它能够对重要的传感器参数进行微调,并在异源表达宿主中恢复传感器响应。作为我们设计的一个关键特性,调节子活性通过为所用表达宿主选择的不同(合成)组成型启动子对相应基因的表达水平进行控制。在此背景下,我们构建了响应碱性氨基酸或环羟基化苯丙烷类化合物的生物传感器,用于[具体应用领域1]和[具体应用领域2]。在液体培养物中以及使用流式细胞术进行单细胞分析期间对这些生物传感器进行的详细表征表明,所提出的传感器设计能够定制重要的生物传感器参数,并使这些传感器能够在相关的异源宿主中应用。