多酶组织和封装的理论和实践方面。

IF 10.4 1区 生物学 Q1 BIOPHYSICS
Annual Review of Biophysics Pub Date : 2023-05-09 Epub Date: 2023-02-28 DOI:10.1146/annurev-biophys-092222-020832
Charlotte H Abrahamson, Brett J Palmero, Nolan W Kennedy, Danielle Tullman-Ercek
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引用次数: 1

摘要

生物技术的出现使代谢工程师能够在细胞中组装异源通路,生产各种与工业相关的产品,而且通常是以可持续的方式进行。然而,许多途径都面临着产品产量低的挑战。这些途径往往存在难以优化的问题,如途径通量低和中间产物的非目标途径消耗。由于需要在通路通量与细胞健康之间取得平衡,尤其是当有毒中间体积累起来时,这些问题就会变得更加严重。大自然也面临着类似的挑战,并进化出空间组织策略来提高代谢途径的通量和效率。受这些策略的启发,生物工程人员开发出了模仿自然界空间组织的巧妙策略。本综述探讨了空间组织策略的使用,包括蛋白质支架和蛋白质封装在蛋白质外壳内,以克服代谢工程工作中的瓶颈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical and Practical Aspects of Multienzyme Organization and Encapsulation.

The advent of biotechnology has enabled metabolic engineers to assemble heterologous pathways in cells to produce a variety of products of industrial relevance, often in a sustainable way. However, many pathways face challenges of low product yield. These pathways often suffer from issues that are difficult to optimize, such as low pathway flux and off-target pathway consumption of intermediates. These issues are exacerbated by the need to balance pathway flux with the health of the cell, particularly when a toxic intermediate builds up. Nature faces similar challenges and has evolved spatial organization strategies to increase metabolic pathway flux and efficiency. Inspired by these strategies, bioengineers have developed clever strategies to mimic spatial organization in nature. This review explores the use of spatial organization strategies, including protein scaffolding and protein encapsulation inside of proteinaceous shells, toward overcoming bottlenecks in metabolic engineering efforts.

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来源期刊
Annual Review of Biophysics
Annual Review of Biophysics 生物-生物物理
CiteScore
21.00
自引率
0.00%
发文量
25
期刊介绍: The Annual Review of Biophysics, in publication since 1972, covers significant developments in the field of biophysics, including macromolecular structure, function and dynamics, theoretical and computational biophysics, molecular biophysics of the cell, physical systems biology, membrane biophysics, biotechnology, nanotechnology, and emerging techniques.
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