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Engineering regulatory networks for complex phenotypes in E. coli

机译:E. Coli复杂表型的工程监管网络

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Regulatory networks describe the hierarchical relationship between transcription factors, associated proteins, and their target genes. Regulatory networks respond to environmental and genetic perturbations by reprogramming cellular metabolism. Here we design, construct, and map a comprehensive regulatory network library containing 110,120 specific mutations in 82 regulators expected to perturb metabolism. We screen the library for different targeted phenotypes, and identify mutants that confer strong resistance to various inhibitors, and/or enhanced production of target compounds. These improvements are identified in a single round of selection, showing that the regulatory network library is universally applicable and is convenient and effective for engineering targeted phenotypes. The facile construction and mapping of the regulatory network library provides a path for developing a more detailed understanding of global regulation in E. coli, with potential for adaptation and use in less-understood organisms, expanding toolkits for future strain engineering, synthetic biology, and broader efforts.
机译:监管网络描述转录因子,相关蛋白质和靶基因之间的层次关系。监管网络通过重编程细胞新陈代谢来响应环境和遗传扰动。在这里,我们设计,构建和映射一个综合的监管网络库,其中包含110,120个特异性突变,预期扰动代谢。我们筛选图书馆以获得不同靶向表型,并鉴定赋予对各种抑制剂的强抗性的突变体,和/或增强靶化合物的产生。这些改进是在一轮选择中识别的,表明监管网络库普遍适用,对工程有针对性表型方便而有效。监管网络图书馆的便利建设和映射为在大肠杆菌中更详细地了解对大肠杆菌的全球调节的途径,具有适应性和在更少的生物体中的适应性和应用,扩展工具包,用于将来的应变工程,合成生物学,以及更广泛的努力。

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