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Spatial organization of enzymes to enhance synthetic pathways in microbial chassis: a systematic review

机译:酶的空间组织以增强微生物底盘中的合成途径:系统综述

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摘要

For years, microbes have been widely applied as chassis in the construction of synthetic metabolic pathways. However, the lack of in vivo enzyme clustering of heterologous metabolic pathways in these organisms often results in low local concentrations of enzymes and substrates, leading to a low productive efficacy. In recent years, multiple methods have been applied to the construction of small metabolic clusters by spatial organization of heterologous metabolic enzymes. These methods mainly focused on using engineered molecules to bring the enzymes into close proximity via different interaction mechanisms among proteins and nucleotides and have been applied in various heterologous pathways with different degrees of success while facing numerous challenges. In this paper, we mainly reviewed some of those notable advances in designing and creating approaches to achieve spatial organization using different intermolecular interactions. Current challenges and future aspects in the further application of such approaches are also discussed in this paper.
机译:多年来,微生物已被广泛用作合成代谢途径构建的基础。然而,这些生物中缺乏异源代谢途径的体内酶簇通常导致酶和底物的局部低浓度,导致低生产效率。近年来,通过异源代谢酶的空间组织,多种方法已被用于构建小的代谢簇。这些方法主要集中于使用工程化分子通过蛋白质和核苷酸之间的不同相互作用机制使酶紧密接近,并已在各种异源途径中以不同程度的成功应用,同时面临众多挑战。在本文中,我们主要回顾了在设计和创建使用不同分子间相互作用实现空间组织的方法方面的一些显着进展。本文还讨论了此类方法的进一步应用中的当前挑战和未来方面。

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