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人工支架系统在微生物代谢工程中的应用。

Application of artificial scaffold systems in microbial metabolic engineering.

作者信息

Liu Nana, Dong Wei, Yang Huanming, Li Jing-Hua, Chiu Tsan-Yu

机构信息

College of Pharmaceutical Science, Zhejiang University of Technology, Hangzhou, China.

HIM-BGI Omics Center, Zhejiang Cancer Hospital, Hangzhou Institute of Medicine (HIM), Chinese Academy of Sciences (CAS), Hangzhou, China.

出版信息

Front Bioeng Biotechnol. 2023 Dec 22;11:1328141. doi: 10.3389/fbioe.2023.1328141. eCollection 2023.

Abstract

In nature, metabolic pathways are often organized into complex structures such as multienzyme complexes, enzyme molecular scaffolds, or reaction microcompartments. These structures help facilitate multi-step metabolic reactions. However, engineered metabolic pathways in microbial cell factories do not possess inherent metabolic regulatory mechanisms, which can result in metabolic imbalance. Taking inspiration from nature, scientists have successfully developed synthetic scaffolds to enhance the performance of engineered metabolic pathways in microbial cell factories. By recruiting enzymes, synthetic scaffolds facilitate the formation of multi-enzyme complexes, leading to the modulation of enzyme spatial distribution, increased enzyme activity, and a reduction in the loss of intermediate products and the toxicity associated with harmful intermediates within cells. In recent years, scaffolds based on proteins, nucleic acids, and various organelles have been developed and employed to facilitate multiple metabolic pathways. Despite varying degrees of success, synthetic scaffolds still encounter numerous challenges. The objective of this review is to provide a comprehensive introduction to these synthetic scaffolds and discuss their latest research advancements and challenges.

摘要

在自然界中,代谢途径通常被组织成复杂的结构,如多酶复合物、酶分子支架或反应微区室。这些结构有助于促进多步代谢反应。然而,微生物细胞工厂中的工程代谢途径不具备固有的代谢调节机制,这可能导致代谢失衡。受自然启发,科学家们成功开发了合成支架,以提高微生物细胞工厂中工程代谢途径的性能。通过招募酶,合成支架促进多酶复合物的形成,从而调节酶的空间分布、提高酶活性,并减少中间产物的损失以及细胞内与有害中间体相关的毒性。近年来,基于蛋白质、核酸和各种细胞器的支架已被开发并用于促进多种代谢途径。尽管取得了不同程度的成功,但合成支架仍面临众多挑战。本综述的目的是全面介绍这些合成支架,并讨论它们的最新研究进展和挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b242/10771841/19e7195dc239/fbioe-11-1328141-g001.jpg

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