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Engineering redox homeostasis to develop efficient alcohol-producing microbial cell factories

机译:工程氧化还原稳态以开发高效的产酒精微生物细胞工厂

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The biosynthetic pathways of most alcohols are linked to intracellular redox homeostasis, which is crucial for life. This crucial balance is primarily controlled by the generation of reducing equivalents, as well as the (reduction)-oxidation metabolic cycle and the thiol redox homeostasis system. As a main oxidation pathway of reducing equivalents, the biosynthesis of most alcohols includes redox reactions, which are dependent on cofactors such as NADH or NADPH. Thus, when engineering alcohol-producing strains, the availability of cofactors and redox homeostasis must be considered. In this review, recent advances on the engineering of cellular redox homeostasis systems to accelerate alcohol biosynthesis are summarized. Recent approaches include improving cofactor availability, manipulating the affinity of redox enzymes to specific cofactors, as well as globally controlling redox reactions, indicating the power of these approaches, and opening a path towards improving the production of a number of different industrially-relevant alcohols in the near future.
机译:大多数醇的生物合成途径与细胞内氧化还原稳态有关,这对生命至关重要。这种关键的平衡主要受还原当量的产生,(还原)-氧化代谢循环和巯基氧化还原稳态的控制。作为还原当量的主要氧化途径,大多数醇类的生物合成都包括氧化还原反应,该反应取决于辅因子,例如NADH或NADPH。因此,当工程生产酒精的菌株时,必须考虑辅因子的可用性和氧化还原稳态。在这篇综述中,总结了在细胞氧化还原稳态系统工程中加速酒精生物合成的最新进展。最近的方法包括改善辅助因子的利用率,操纵氧化还原酶对特定辅助因子的亲和力,以及全局控制氧化还原反应,表明这些方法的作用,并开辟一条道路,以改善工业中与工业相关的多种醇的生产。不久的将来。

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