Chheda Anuj H, Vernekar Madhavi R
School of Biotechnology and Bioinformatics, D. Y. Patil University, C.B.D Belapur, Navi Mumbai, 400614, Maharashtra, India.
3 Biotech. 2015 Oct;5(5):839-846. doi: 10.1007/s13205-015-0291-8. Epub 2015 Mar 3.
Epsilon poly-L-lysine (ε-PL) is a homo-biopolymer with approximately 25-30 L-lysine residues. It is a promising natural biopolymer widely used in food and pharmaceutical industry. The present work reports enhanced production of ε-PL with a novel producer Bacillus cereus using amino acids and TCA cycle intermediates in the fermentation medium. Among the various amino acids and TCA cycle intermediates tested 2 mM L-aspartic acid and 5 mM citric acid gave ε-PL yield of 145.5 and 230 mg/L, respectively. A combination of citric acid after 24 h and L-aspartic acid after 36 h improved ε-PL yield from 85 mg/L (control) to 335 mg/L. Glucose feeding strategy along with metabolic precursors was employed which further enhanced ε-PL yield to 565 mg/L. Thus, more than sixfold increase in ε-PL yield was achieved suggesting the potential of Bacillus cereus as a novel ε-PL producer.
ε-聚-L-赖氨酸(ε-PL)是一种具有约25-30个L-赖氨酸残基的同型生物聚合物。它是一种有前景的天然生物聚合物,广泛应用于食品和制药行业。目前的工作报道了使用发酵培养基中的氨基酸和三羧酸循环中间体,利用新型产ε-PL菌株蜡样芽孢杆菌提高ε-PL产量。在测试的各种氨基酸和三羧酸循环中间体中,2 mM L-天冬氨酸和5 mM柠檬酸分别使ε-PL产量达到145.5和230 mg/L。24小时后添加柠檬酸并在36小时后添加L-天冬氨酸的组合将ε-PL产量从85 mg/L(对照)提高到335 mg/L。采用了葡萄糖补料策略以及代谢前体,这进一步将ε-PL产量提高到565 mg/L。因此,ε-PL产量提高了六倍多,表明蜡样芽孢杆菌作为新型ε-PL生产者的潜力。