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Systems biology based metabolic engineering for non-natural chemicals

机译:基于系统生物学的非天然化学品代谢工程

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Production of chemicals in microorganisms is no longer restricted to products arising from native metabolic potential. In this review, we highlight the evolution of metabolic engineering studies, from the production of natural chemicals fermented from biomass hydrolysates, to the engineering of microorganisms for the production of non-natural chemicals. Advances in synthetic biology are accelerating the successful development of microbial cell factories to directly produce value-added chemicals. Here we outline the emergence of novel computational tools for the creation of synthetic pathways, for designing artificial enzymes for non-natural reactions and for re-wiring host metabolism to increase the metabolic flux to products. We also highlight exciting opportunities for applying directed evolution of enzymes, dynamic control of growth and production, growth coupling strategies as well as decoupled strategies based on orthogonal pathways in the context of non-natural chemicals.
机译:微生物中的化学物质的生产不再限于原始代谢潜力所产生的产品。 在本综述中,我们突出了代谢工程研究的演变,从生物量水解产物发酵的天然化学品中,以生产非天然化学品的微生物工程。 合成生物学的进步正在加速微生物细胞工厂的成功发展,直接产生增值化学品。 在这里,我们概述了用于创建合成途径的新型计算工具的出现,用于设计非天然反应的人工酶,并用于将宿主代谢进行重新布线以增加产品的代谢通量。 我们还突出了令人兴奋的机会来应用酶,生长和生产,增长耦合策略的动态控制,基于非天然化学品背景下的正交途径的脱钩策略。

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