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Dynamic metabolic engineering: New strategies for developing responsive cell factories

机译:动态代谢工程:开发响应细胞工厂的新策略

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摘要

Metabolic engineering strategies have enabled improvements in yield and titer for a variety of valuable small molecules produced naturally in microorganisms, as well as those produced via heterologous pathways. Typically, the approaches have been focused on up- and downregulation of genes to redistribute steady-state pathway fluxes, but more recently a number of groups have developed strategies for dynamic regulation, which allows rebalancing of fluxes according to changing conditions in the cell or the fermentation medium. This review highlights some of the recently published work related to dynamic metabolic engineering strategies and explores how advances in high-throughput screening and synthetic biology can support development of new dynamic systems. Dynamic gene expression profiles allow trade-offs between growth and production to be better managed and can help avoid build-up of undesired intermediates. The implementation is more complex relative to static control, but advances in screening techniques and DNA synthesis will continue to drive innovation in this field.
机译:代谢工程学策略提高了微生物自然产生的各种有价值的小分子以及通过异源途径产生的有价值的小分子的产量和滴度。通常,这些方法集中于基因的上调和下调以重新分配稳态途径通量,但是最近,许多研究小组已经开发出动态调节策略,该策略可以根据细胞或体内条件的变化重新平衡通量。发酵培养基。这篇综述重点介绍了与动态代谢工程策略相关的最新发表的工作,并探讨了高通量筛选和合成生物学的进步如何支持新的动态系统的开发。动态基因表达谱可更好地控制生长与生产之间的折衷,并有助于避免不希望的中间体的积累。相对于静态控制而言,实现起来更为复杂,但是筛选技术和DNA合成技术的进步将继续推动这一领域的创新。

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