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Metabolomics methods for the synthetic biology of secondary metabolism

机译:二级代谢合成生物学的代谢组学方法

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摘要

Many microbial secondary metabolites are of high biotechnological value for medicine, agriculture, and the food industry. Bacterial genome mining has revealed numerous novel secondary metabolite biosynthetic gene clusters, which encode the potential to synthesize a large diversity of compounds that have never been observed before. The stimulation or "awakening" of this cryptic microbial secondary metabolism has naturally attracted the attention of synthetic microbiologists, who exploit recent advances in DNA sequencing and synthesis to achieve unprecedented control over metabolic pathways. One of the indispensable tools in the synthetic biology toolbox is metabolomics, the global quantification of small biomolecules. This review illustrates the pivotal role of metabolomics for the synthetic microbiology of secondary metabolism, including its crucial role in novel compound discovery in microbes, the examination of side products of engineered metabolic pathways, as well as the identification of major bottlenecks for the overproduction of compounds of interest, especially in combination with metabolic modeling. We conclude by highlighting remaining challenges and recent technological advances that will drive metabolomics towards fulfilling its potential as a cornerstone technology of synthetic microbiology. (C) 2012 Federation of European Biochemical Societies. Published by Elsevier B. V. All rights reserved.
机译:许多微生物的次级代谢产物对医药,农业和食品工业具有很高的生物技术价值。细菌基因组挖掘揭示了许多新的次级代谢产物生物合成基因簇,这些簇编码了合成以前从未观察到的多种化合物的潜力。这种隐秘微生物次级代谢的刺激或“唤醒”自然吸引了合成微生物学家的注意,他们利用DNA测序和合成的最新进展来实现对代谢途径的空前控制。合成生物学工具箱中必不可少的工具之一是代谢组学,即小生物分子的全球量化。这篇综述阐明了代谢组学在次级代谢合成微生物学中的关键作用,包括其在微生物中新化合物发现,工程化代谢途径副产物的检测以及鉴定化合物过量生产的主要瓶颈方面的关键作用。感兴趣,特别是与代谢模型结合时。作为总结,我们着重强调了仍然存在的挑战和最新的技术进步,这些挑战将推动代谢组学成为合成微生物学的基础技术,发挥其潜力。 (C)2012欧洲生物化学学会联合会。由Elsevier B. V.发行。保留所有权利。

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