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Metabolic flux analysis of E. coli knockouts: lessons from the Keio collection and future outlook

机译:大肠杆菌敲除物的代谢通量分析:庆应义collection系列的经验教训和未来展望

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摘要

Cellular metabolic and regulatory systems are of fundamental interest to biologists and engineers. Incomplete understanding of these complex systems remains an obstacle to progress in biotechnology and metabolic engineering. An established method for obtaining new information on network structure, regulation and dynamics is to study the cellular system following a perturbation such as a genetic knockout. The Keio collection of all viable E. coli single-gene knockouts is facilitating a systematic investigation of the regulation and metabolism of E. coli. Of all omics measurements available, the metabolic flux profile (the fluxome) provides the most direct and relevant representation of the cellular phenotype. Recent advances in 13C-metabolic flux analysis are now permitting highly precise and accurate flux measurements for investigating cellular systems and guiding metabolic engineering efforts.
机译:细胞代谢和调节系统是生物学家和工程师的基本兴趣。对这些复杂系统的不完整理解仍然是生物技术和代谢工程进展的障碍。一种获取有关网络结构,调控和动力学新信息的既定方法是研究扰动(例如基因敲除)后的细胞系统。所有可行的大肠杆菌单基因敲除基因的Keio收集都有助于对大肠杆菌的调节和代谢进行系统的研究。在所有可用的组学测量中,代谢通量图(通量组)提供了细胞表型的最直接和最相关的表示。 13 C代谢通量分析的最新进展现在允许进行高精度和精确的通量测量,以研究细胞系统并指导代谢工程。

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