Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, School of Life Sciences and Health Engineering, Jiangnan University, Wuxi, 214122, People's Republic of China.
National Engineering Research Center for Cereal Fermentation and Food Biomanufacturing, School of Biotechnology, Jiangnan University, Wuxi, 214122, People's Republic of China.
Appl Microbiol Biotechnol. 2023 Aug;107(15):4759-4775. doi: 10.1007/s00253-023-12612-2. Epub 2023 Jun 22.
Nicotinamide mononucleotide (NMN), a naturally occurring biologically active nucleotide, mainly functions via mediating the biosynthesis of NAD. In recent years, its excellent pharmacological activities including anti-aging, treating neurodegenerative diseases, and protecting the heart have attracted increasing attention from scholars and entrepreneurs for production of a wide range of formulations, including functional food ingredients, health care products, active pharmaceuticals, and pharmaceutical intermediates. Presently, the synthesis methods of NMN mainly include two categories: chemical synthesis and biosynthesis. With the development of biocatalyst engineering and synthetic biology strategies, bio-preparation has proven to be efficient, economical, and sustainable methods. This review summarizes the chemical synthesis and biosynthetic pathways of NMN and provides an in-depth investigation on the mining and modification of enzyme resources during NMN biosynthesis, as well as the screening of hosts and optimization of chassis cells via metabolic engineering, which provide effective strategies for efficient production of NMN. In addition, an overview of the significant physiological functions and activities of NMN is elaborated. Finally, future research on technical approaches to further enhance NMN synthesis and strengthen clinical studies of NMN are prospected, which would lay the foundation for further promoting the application of NMN in nutrition, healthy food, and medicine in the future. KEY POINTS: • NMN supplementation effectively increases the level of NAD. • The chemical and biological synthesis of NMN are comprehensively reviewed. • The impact of NMN on the treatment of various diseases is summarized.
烟酰胺单核苷酸(NMN)是一种天然存在的生物活性核苷酸,主要通过调节 NAD 的生物合成发挥作用。近年来,其出色的药理学活性,包括抗衰老、治疗神经退行性疾病和保护心脏,引起了学者和企业家的越来越多的关注,促使他们生产出包括功能性食品成分、保健品、活性药物和药物中间体在内的各种制剂。目前,NMN 的合成方法主要包括化学合成和生物合成两类。随着生物催化剂工程和合成生物学策略的发展,生物制备已被证明是高效、经济和可持续的方法。本综述总结了 NMN 的化学合成和生物合成途径,并深入探讨了 NMN 生物合成过程中酶资源的挖掘和修饰,以及通过代谢工程筛选宿主和优化底盘细胞,为 NMN 的高效生产提供了有效的策略。此外,还阐述了 NMN 的重要生理功能和活性。最后,对进一步提高 NMN 合成的技术方法和加强 NMN 临床研究进行了展望,为未来进一步推动 NMN 在营养、保健食品和医药领域的应用奠定了基础。关键点: • NMN 补充剂可有效提高 NAD 水平。 • 全面综述了 NMN 的化学和生物合成。 • 总结了 NMN 对各种疾病治疗的影响。