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用于提高微生物代谢途径效率的合成支架系统

Synthetic Scaffold Systems for Increasing the Efficiency of Metabolic Pathways in Microorganisms.

作者信息

Geraldi Almando, Khairunnisa Fatiha, Farah Nadya, Bui Le Minh, Rahman Ziaur

机构信息

Department of Biology, Faculty of Science and Technology, Universitas Airlangga, Surabaya 60115, Indonesia.

Research Center for Bio-Molecule Engineering, Universitas Airlangga, Surabaya 60115, Indonesia.

出版信息

Biology (Basel). 2021 Mar 11;10(3):216. doi: 10.3390/biology10030216.

Abstract

Microbes have been the preferred hosts for producing high-value chemicals from cheap raw materials. However, metabolic flux imbalance, the presence of competing pathways, and toxic intermediates often lead to low production efficiency. The spatial organization of the substrates, intermediates, and enzymes is critical to ensuring efficient metabolic activity by microorganisms. One of the most common approaches for bringing the key components of biosynthetic pathways together is through molecular scaffolds, which involves the clustering of pathway enzymes on engineered molecules via different interacting mechanisms. In particular, synthetic scaffold systems have been applied to improve the efficiency of various heterologous and synthetic pathways in and , with varying degrees of success. Herein, we review the recent developments and applications of protein-based and nucleic acid-based scaffold systems and discuss current challenges and future directions in the use of such approaches.

摘要

微生物一直是利用廉价原材料生产高价值化学品的首选宿主。然而,代谢通量失衡、竞争途径的存在以及有毒中间体常常导致生产效率低下。底物、中间体和酶的空间组织对于确保微生物的高效代谢活性至关重要。将生物合成途径的关键组分聚集在一起的最常见方法之一是通过分子支架,这涉及通过不同的相互作用机制将途径酶聚集在工程化分子上。特别是,合成支架系统已被应用于提高[具体应用领域1]和[具体应用领域2]中各种异源和合成途径的效率,并取得了不同程度的成功。在此,我们综述了基于蛋白质和基于核酸的支架系统的最新进展和应用,并讨论了使用此类方法当前面临的挑战和未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2286/7998396/1773b1b5f530/biology-10-00216-g001.jpg

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