乳酸链球菌素
食品科学
化学
发酵
抗菌剂
细菌素
生物制造
食品防腐剂
镧系元素
生物技术
开胃菜
细菌
食品保存
生产(经济)
食品加工中的发酵
防腐剂
发酵剂
酵母
生物保留
工业微生物学
生物化学
作者
Yadie Wang,L Wang,Xicheng Zhang,沈祖连,Hao Dong,Haitao Zhang,Xusheng Chen,J F Zhang
标识
DOI:10.1021/acs.jafc.5c16329
摘要
Nisin, a natural, nontoxic antimicrobial peptide, has been widely studied for its broad-spectrum antibacterial activity against Gram-positive bacteria and its applications in food preservation and pharmaceuticals. However, the low nisin titer of Lactococcus lactis poses an obstacle to its large-scale industrial production. Here, we studied the metabolic basis of increased nisin production under aerobic conditions and proposed a high-efficiency fermentation strategy. Aerobic cultivation of L. lactis CF6 significantly increased intracellular ATP and the NAD + /NADH ratio, thus redirecting metabolic flux toward nisin production. Furthermore, cysteine availability and the supplementation of hemin and antioxidants effectively reduced oxidative stress caused by high dissolved oxygen, leading to a significant improvement in nisin titer. Through multimodule synergistic regulation and process optimization, a nisin titer of 18200 IU/mL was achieved in a 5 L bioreactor. In summary, this study lays the foundation for the metabolic engineering of L. lactis and provides valuable insights into the large-scale biomanufacturing of natural antimicrobial peptides.
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