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一种无 ATP 的体外合成酶生物系统,可实现淀粉到甘露醇的一锅化学计量转化。

An ATP-free in vitro synthetic enzymatic biosystem facilitating one-pot stoichiometric conversion of starch to mannitol.

机构信息

Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, 32 West 7th Avenue, Tianjin Airport Economic Area, Tianjin, 300308, People's Republic of China.

Key Laboratory of Industrial Fermentation Microbiology, Ministry of Education, Tianjin Industrial Microbiology Key Laboratory, College of Biotechnology, Tianjin University of Science and Technology, Tianjin, 300457, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2021 Mar;105(5):1913-1924. doi: 10.1007/s00253-021-11154-9. Epub 2021 Feb 5.

Abstract

D-Mannitol (hereinafter as mannitol) is a six-carbon sugar alcohol with diverse applications in food and pharmaceutical industries. To overcome the drawbacks of the chemical hydrogenation method commonly used for mannitol production at present, there is a need to search for novel prospective mannitol production strategies that are of high yield and low cost. In this study, we present a novel approach for the stoichiometric synthesis of mannitol via an in vitro synthetic enzymatic biosystem using the low-cost starch as substrate. By dividing the overall reaction pathway into three modules which could be executed sequentially in one pot, our design aimed at the stoichiometric conversion of starch-based materials into mannitol in an ATP-independent and cofactor-balanced manner. At optimized conditions, high product yields of around 95-98% were achieved using both 10 g/L and 50 g/L maltodextrin as substrate, indicating the potential of our designed system for industrial applications. This study not only provides a high-efficient strategy for the synthesis of mannitol but also expands the product scope of sugar alcohols by the in vitro synthetic enzymatic biosystems using low-cost starch-based materials as the input. KEY POINTS : • We described a design-build-test-learn pipeline to construct in vitro biosystems. • The designed system comprised six key enzymes and another three enzymes. • The system converted maltodextrin stoichiometrically to mannitol in one pot.

摘要

甘露醇(以下简称甘露醇)是一种六碳糖醇,在食品和制药行业中有广泛的应用。为了克服目前甘露醇生产中常用的化学氢化法的缺点,需要寻找高产、低成本的新型甘露醇生产策略。在本研究中,我们提出了一种使用低成本淀粉作为底物的体外合成酶生物系统来实现甘露醇的化学计量合成的新方法。通过将整个反应途径分为三个模块,可以在一个容器中顺序执行,我们的设计旨在以非依赖于 ATP 和辅因子平衡的方式将基于淀粉的材料化学计量转化为甘露醇。在优化条件下,使用 10 g/L 和 50 g/L 的麦芽糊精作为底物,产物收率高达 95-98%左右,表明我们设计的系统具有工业化应用的潜力。本研究不仅为甘露醇的合成提供了高效的策略,而且通过使用低成本淀粉基材料作为输入的体外合成酶生物系统扩展了糖醇的产品范围。

关键点

  1. 我们描述了一个设计-构建-测试-学习的管道来构建体外生物系统。

  2. 该系统由六个关键酶和另外三个酶组成。

  3. 该系统可将麦芽糊精在一个容器中化学计量地转化为甘露醇。

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