College of Food and Bioengineering, Henan University of Science and Technology, Luoyang, 471023, China.
Henan Engineering Research Center of Food Microbiology, Luoyang, 471023, China.
World J Microbiol Biotechnol. 2022 May 31;38(7):123. doi: 10.1007/s11274-022-03304-6.
Epsilon-poly-L-lysine (ε-PL) is an unusual biopolymer composed of L-lysine produced by several microorganisms, especially by the genus Streptomyces. Due to its excellent antimicrobial activity, good water solubility, high safety, and biodegradable nature, ε-PL with a GRAS status has been widely used in food and pharmaceutical industries. In the past years, studies have focused on the biotechnological production of ɛ-PL, the biosynthetic mechanism of microbial ɛ-PL, and its application. To provide new perspectives from recent advances, the review introduced the methods for the isolation of ɛ-PL producing strains and the biosynthetic mechanism of microbial ɛ-PL. We summarized the strategies for the improvement of ɛ-PL producing strains, including physical and chemical mutagenesis, ribosome engineering and gene engineering, and compared the different metabolic regulation strategies for improving ɛ-PL production, including medium optimization, nutrient supply, pH control, and dissolved oxygen control. Then, the downstream purification methods of ɛ-PL and its recent applications in food and medicine industries were introduced. Finally, we also proposed the potential challenges and the perspectives for the production of ε-PL.
ε-聚赖氨酸(ε-PL)是一种由微生物产生的不寻常的生物聚合物,特别是由链霉菌属产生。由于其具有优异的抗菌活性、良好的水溶性、高安全性和可生物降解性,具有 GRAS 地位的 ε-PL 已被广泛应用于食品和制药行业。在过去的几年中,研究集中在ε-PL 的生物工艺生产、微生物ε-PL 的生物合成机制及其应用上。为了从最近的进展中提供新的视角,本综述介绍了ε-PL 产生菌的分离方法和微生物ε-PL 的生物合成机制。我们总结了提高ε-PL 产生菌的策略,包括物理和化学诱变、核糖体工程和基因工程,并比较了不同的代谢调控策略,以提高ε-PL 的产量,包括培养基优化、营养供应、pH 值控制和溶解氧控制。然后,介绍了ε-PL 的下游纯化方法及其在食品和医药工业中的最新应用。最后,我们还提出了ε-PL 生产的潜在挑战和展望。