The Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, China.
The Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, China; College of life Science and Engineering, Northwest Minzu University, Lanzhou 730030, China.
Biotechnol Adv. 2021 Jan-Feb;46:107678. doi: 10.1016/j.biotechadv.2020.107678. Epub 2020 Dec 5.
Sialic acids (Sias) are negatively charged functional monosaccharides present in a wide variety of natural sources (plants, animals and microorganisms). Sias play an important role in many life processes, which are widely applied in the medical and food industries as intestinal antibacterials, antivirals, anti-oxidative agents, food ingredients, and detoxification agents. Most Sias are composed of N-acetylneuraminic acid (Neu5Ac, >99%), and Sia is its most commonly used name. In this article, we review Sias in terms of their structures, applications, determination methods, metabolism, and production strategies. In particular, we summarise and compare different production strategies, including extraction from natural sources, chemical synthesis, polymer decomposition, enzymatic synthesis, whole-cell catalysis, and de novo biosynthesis via microorganism fermentation. We also discuss research on their physiological functions and applications, barriers to efficient production, and strategies for overcoming these challenges. We focus on efficient de novo biosynthesis strategies for Neu5Ac via microbial fermentation using novel synthetic biology tools and methods that may be applied in future. This work provides a comprehensive overview of recent advances on Sias, and addresses future challenges regarding their functions, applications, and production.
唾液酸(Sias)是带负电荷的功能单糖,存在于多种天然来源(植物、动物和微生物)中。Sias 在许多生命过程中发挥着重要作用,广泛应用于医学和食品工业,如肠道抗菌剂、抗病毒剂、抗氧化剂、食品成分和解毒剂。大多数 Sias 由 N-乙酰神经氨酸(Neu5Ac,>99%)组成,Sia 是其最常用的名称。本文从结构、应用、测定方法、代谢和生产策略等方面综述了 Sias。特别地,我们总结并比较了不同的生产策略,包括从天然来源提取、化学合成、聚合物分解、酶合成、全细胞催化和通过微生物发酵从头合成。我们还讨论了它们生理功能和应用的研究、高效生产的障碍以及克服这些挑战的策略。我们专注于利用新型合成生物学工具和方法通过微生物发酵高效从头合成 Neu5Ac,这可能在未来得到应用。这项工作全面概述了 Sias 的最新进展,并探讨了它们的功能、应用和生产方面的未来挑战。