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Applications of genetically-encoded biosensors for the construction and control of biosynthetic pathways.

机译:基因编码生物传感器在构建和控制生物合成途径中的应用。

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摘要

Cells are filled with biosensors, molecular systems that measure the state of the cell and respond by regulating host processes. In much the same way that an engineer would monitor a chemical reactor, the cell uses these sensors to monitor changing intracellular environments and produce consistent behavior despite the variable environment. While natural systems derive a clear benefit from pathway regulation, past research efforts in engineering cellular metabolism have focused on introducing new pathways and removing existing pathway regulation. Synthetic biology is a rapidly growing field that focuses on the development of new tools that support the design, construction, and optimization of biological systems. Recent advances have been made in the design of genetically-encoded biosensors and the application of this class of molecular tools for optimizing and regulating heterologous pathways. Biosensors to cellular metabolites can be taken directly from natural systems, engineered from natural sensors, or constructed entirely in vitro. When linked to reporters, such as antibiotic resistance markers, these metabolite sensors can be used to report on pathway productivity, allowing high-throughput screening for pathway optimization. Future directions will focus on the application of biosensors to introduce feedback control into metabolic pathways, providing dynamic control strategies to increase the efficient use of cellular resources and pathway reliability.
机译:细胞充满了生物传感器,生物传感器是测量细胞状态并通过调节宿主过程做出反应的分子系统。就像工程师监视化学反应器一样,细胞使用这些传感器监视变化的细胞内环境,即使环境变化也可以产生一致的行为。尽管自然系统从途径调节中获得了明显的好处,但过去有关细胞代谢工程的研究工作都集中在引入新途径和消除现有途径调节上。合成生物学是一个快速发展的领域,专注于开发支持生物系统设计,构建和优化的新工具。在基因编码生物传感器的设计以及此类分子工具在优化和调节异源途径中的应用方面取得了最新进展。细胞代谢产物的生物传感器可以直接从自然系统中提取,也可以从自然传感器中提取,也可以完全在体外构建。当与诸如抗生素抗性标记物之类的报告基因连接时,这些代谢物传感器可用于报告途径生产力,从而实现高通量筛选以优化途径。未来的方向将集中在生物传感器的应用上,以将反馈控制引入代谢途径,提供动态控制策略,以提高细胞资源的有效利用和途径的可靠性。

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