首页> 外文期刊>BMC Biotechnology >Generation of an engineered food-grade Lactococcus lactis strain for production of an antimicrobial peptide: in vitro and in silico evaluation
【24h】

Generation of an engineered food-grade Lactococcus lactis strain for production of an antimicrobial peptide: in vitro and in silico evaluation

机译:生成工程食品级乳酸乳酸乳酸菌菌株,用于生产抗微生物肽:体外和硅评价

获取原文
       

摘要

Foodborne pathogens and their biofilms are considered as one of the most serious problems in human health and food industry. Moreover, safety of foods is a main global concern because of the increasing use of chemical food additives. Ensuring food safety enhances interest in discovery of new alternative compounds such as antimicrobial peptides (AMPs), which can be used as bio-preservatives in the food industry. In this study, the most important antimicrobial peptides of camel milk lactoferrin (lactoferrampin and lactoferricin) were recombinantly expressed in the form of chimeric peptide (cLFchimera) in a food-grade L. lactis strain. P170 expression system was used to express secreted cLFchimera using pAMJ1653 expression vector which harbors a safe (non-antibiotic) selectable marker. Peptide purification was carried out using Ni-NTA agarose column from culture medium with concentration of 0.13?mg/mL. The results of disk diffusion test revealed that cLFchimera had considerable antimicrobial activity against a number of major foodborne bacteria. Furthermore, this chimeric peptide showed strong and weak inhibitory effect on biofilm formation against P. aeruginosa, S. aureus E. faecalis, and E. coli, respectively. Antioxidant activity and thermal stability of the chimeric peptide was determined. The results showed that cLFchimera had antioxidant activity (IC50: 310?μ/mL) and its activity was not affected after 40?min of boiling. Finally, we evaluated the interaction of the peptide with LPS and DNA in bacteria using molecular dynamic simulation as two main intra and extra cellular targets for AMPs, respectively. Our in silico analysis showed that cLFchimera had strong affinity to both of these targets by positive charged residues after 50?ns molecular dynamic simulation. Overall, the engineered food-grade L. lactis generated in the present study successfully expressed a secreted chimeric peptide with antimicrobial properties and could be considered as a promising bio-preservative in the food industry.
机译:食源性病原体及其生物膜被认为是人类健康和食品行业中最严重的问题之一。此外,由于使用化学食品添加剂的使用,食物的安全是一种主要的全球担忧。确保食品安全增强了对新替代化合物如抗微生物肽(AMPS)的兴趣,可用作食品工业中的生物防腐剂。在该研究中,骆驼乳乳铁蛋白(Lactoferrampin和Lactoferricin)的最重要的抗微生物肽以嵌合肽(Clfchimera)的形式在食品级L.乳酸乳裂菌菌株中重组表达。使用PAMJ1653表达载体用于表达分泌的Clfchimera的PAMJ0表达系统,其留下安全(非抗生素)选择标记。使用浓度为0.13Ω·mg / ml的培养基进行肽纯化。盘扩散试验结果显示Clfchimera对许多主要的食物弃儿细菌具有相当大的抗微生物活性。此外,这种嵌合肽分别对P.铜绿假单胞菌,金黄色葡萄球菌E.粪植物和大肠杆菌的Biofilm形成的强烈和弱抑制作用。测定抗氧化活性和嵌合肽的热稳定性。结果表明,Clfchimera具有抗氧化活性(IC 50:310?μ/ ml),其活性在40次沸腾后不受影响。最后,我们使用分子动态模拟评估了肽与LPS和DNA的相互作用,分别是AMPS的两个主要内部和额外细胞靶标。我们在硅分析表明,Clfchimera通过50μs分子动态模拟后通过正电荷残留对这两个靶具有很强的亲和力。总的来说,本研究中产生的工程食品级L.乳酸菌成功地表达了一种具有抗微生物性质的分泌的嵌合肽,并且可以被认为是食品工业中有希望的生物防腐剂。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号