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Engineered signal-coupled inducible promoters: measuring the apparent RNA-polymerase resource budget

机译:工程化信号耦合诱导型启动子:测量表观RNA聚合酶资源预算

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摘要

Inducible promoters are a central regulatory component in synthetic biology, metabolic engineering, and protein production for laboratory and commercial uses. Many of these applications utilize two or more exogenous promoters, imposing a currently unquantifiable metabolic burden on the living system. Here, we engineered a collection of inducible promoters (regulated by LacI-based transcription factors) that maximize the free-state of endogenous RNA polymerase (RNAP). We leveraged this collection of inducible promotors to construct simple two-channel logical controls that enabled us to measure metabolic burden – as it relates to RNAP resource partitioning. The two-channel genetic circuits utilized sets of signal-coupled transcription factors that regulate cognate inducible promoters in a coordinated logical fashion. With this fundamental genetic architecture, we evaluated the performance of each inducible promoter as discrete operations, and as coupled systems to evaluate and quantify the effects of resource partitioning. Obtaining the ability to systematically and accurately measure the apparent RNA-polymerase resource budget will enable researchers to design more robust genetic circuits, with significantly higher fidelity. Moreover, this study presents a workflow that can be used to better understand how living systems adapt RNAP resources, via the complementary pairing of constitutive and regulated promoters that vary in strength.
机译:诱导型启动子是合成生物学,代谢工程和蛋白质生产的中央调节组分,用于实验室和商业用途。这些应用中的许多应用利用了两种或更多种外源性启动子,对生活系统施加目前无法满足的代谢负担。在这里,我们设计了一系列诱导型启动子(受Laci基转录因子调节),其最大化内源性RNA聚合酶(RNAP)的自由状态。我们利用此集合诱导型促销商来构建简单的双通道逻辑控件,使我们能够测量代谢负担 - 因为它与RNAP资源分区相关。双通道遗传电路利用一组信号偶联转录因子,以协调的逻辑方式调节同源诱导促进剂。通过这种基本的遗传架构,我们评估了每个诱导型启动子作为离散操作的性能,以及耦合系统来评估和量化资源分区的影响。获得系统性和准确测量表观RNA聚合酶资源预算的能力将使研究人员能够设计更强大的遗传电路,具有明显更高的保真度。此外,本研究提供了一种工作流程,可以通过互补的配对,以更好地了解生活系统适应RNAP资源的改变。

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