A Comprehensive Antimicrobial Activity Evaluation of the Recombinant Microcin J25 Against the Foodborne Pathogens Salmonella and E. coli O157:H7 by Using a Matrix of Conditions

Natural microcin J25 (MccJ25) represent promising alternatives to traditional antibiotics for the treatment of drug-resistant infections. However, little is known about the antibacterial activity of recombinant MccJ25 against foodborne pathogens. Here, the activity of recombinant MccJ25 was examined...

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Main Authors: Haitao Yu, Ning Li, Xiangfang Zeng, Lu Liu, Yuming Wang, Gang Wang, Shuang Cai, Shuo Huang, Xiuliang Ding, Qinglong Song, Shiyan Qiao
Format: Article
Language:English
Published: Frontiers Media S.A. 2019-08-01
Series:Frontiers in Microbiology
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fmicb.2019.01954/full
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language English
format Article
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author Haitao Yu
Haitao Yu
Haitao Yu
Ning Li
Ning Li
Ning Li
Xiangfang Zeng
Xiangfang Zeng
Xiangfang Zeng
Lu Liu
Lu Liu
Lu Liu
Yuming Wang
Yuming Wang
Yuming Wang
Gang Wang
Gang Wang
Gang Wang
Shuang Cai
Shuang Cai
Shuang Cai
Shuo Huang
Shuo Huang
Shuo Huang
Xiuliang Ding
Xiuliang Ding
Xiuliang Ding
Qinglong Song
Qinglong Song
Qinglong Song
Shiyan Qiao
Shiyan Qiao
Shiyan Qiao
spellingShingle Haitao Yu
Haitao Yu
Haitao Yu
Ning Li
Ning Li
Ning Li
Xiangfang Zeng
Xiangfang Zeng
Xiangfang Zeng
Lu Liu
Lu Liu
Lu Liu
Yuming Wang
Yuming Wang
Yuming Wang
Gang Wang
Gang Wang
Gang Wang
Shuang Cai
Shuang Cai
Shuang Cai
Shuo Huang
Shuo Huang
Shuo Huang
Xiuliang Ding
Xiuliang Ding
Xiuliang Ding
Qinglong Song
Qinglong Song
Qinglong Song
Shiyan Qiao
Shiyan Qiao
Shiyan Qiao
A Comprehensive Antimicrobial Activity Evaluation of the Recombinant Microcin J25 Against the Foodborne Pathogens Salmonella and E. coli O157:H7 by Using a Matrix of Conditions
Frontiers in Microbiology
Salmonella
Escherichia coli O157:H7
recombinant microcin J25
antimicrobial activity
biological environments
stability
author_facet Haitao Yu
Haitao Yu
Haitao Yu
Ning Li
Ning Li
Ning Li
Xiangfang Zeng
Xiangfang Zeng
Xiangfang Zeng
Lu Liu
Lu Liu
Lu Liu
Yuming Wang
Yuming Wang
Yuming Wang
Gang Wang
Gang Wang
Gang Wang
Shuang Cai
Shuang Cai
Shuang Cai
Shuo Huang
Shuo Huang
Shuo Huang
Xiuliang Ding
Xiuliang Ding
Xiuliang Ding
Qinglong Song
Qinglong Song
Qinglong Song
Shiyan Qiao
Shiyan Qiao
Shiyan Qiao
author_sort Haitao Yu
title A Comprehensive Antimicrobial Activity Evaluation of the Recombinant Microcin J25 Against the Foodborne Pathogens Salmonella and E. coli O157:H7 by Using a Matrix of Conditions
title_short A Comprehensive Antimicrobial Activity Evaluation of the Recombinant Microcin J25 Against the Foodborne Pathogens Salmonella and E. coli O157:H7 by Using a Matrix of Conditions
title_full A Comprehensive Antimicrobial Activity Evaluation of the Recombinant Microcin J25 Against the Foodborne Pathogens Salmonella and E. coli O157:H7 by Using a Matrix of Conditions
title_fullStr A Comprehensive Antimicrobial Activity Evaluation of the Recombinant Microcin J25 Against the Foodborne Pathogens Salmonella and E. coli O157:H7 by Using a Matrix of Conditions
title_full_unstemmed A Comprehensive Antimicrobial Activity Evaluation of the Recombinant Microcin J25 Against the Foodborne Pathogens Salmonella and E. coli O157:H7 by Using a Matrix of Conditions
title_sort comprehensive antimicrobial activity evaluation of the recombinant microcin j25 against the foodborne pathogens salmonella and e. coli o157:h7 by using a matrix of conditions
publisher Frontiers Media S.A.
series Frontiers in Microbiology
issn 1664-302X
publishDate 2019-08-01
description Natural microcin J25 (MccJ25) represent promising alternatives to traditional antibiotics for the treatment of drug-resistant infections. However, little is known about the antibacterial activity of recombinant MccJ25 against foodborne pathogens. Here, the activity of recombinant MccJ25 was examined using a matrix of conditions in order to assess the efficacy of recombinant MccJ25 as a mitigation against foodborne pathogens, such as Salmonella species and Escherichia coli (E. coli) O157:H7. Results showed that recombinant MccJ25 displayed excellent antimicrobial activity against these foodborne pathogens, including clinical isolates of Salmonella and E. coli, as well as clinical antibiotic-resistant Salmonella and E. coli isolates with different minimal inhibitory concentrations. In addition, antimicrobial activity curves and Live/Dead assay evidenced that recombinant MccJ25 harbors strong bactericidal activity against Salmonella and E. coli O157:H7. Notably, recombinant MccJ25 also had great potency and induced fast mortality against different growth phase of Salmonella and E. coli. The stability analysis results showed that the activity of recombinant MccJ25 was not influenced by temperatures as high as 121°C. Varying the pH from 2.0 to 9.0 did not appear to affect the activity of recombinant MccJ25. Under the challenge of several proteases, simulated gastrointestinal fluids and serum, recombinant MccJ25 still maintained exceptionally strong antimicrobial activity. Significant reductions in Salmonella Pullorum levels were also achieved in food biological environments, such as milk, egg and meat. Moreover, we demonstrated that recombinant MccJ25 appeared to act by inducing membrane breaks, thinning, and disintegration in the Salmonella Pullorum cytoplasmic membrane. Taken together, these results indicated that recombinant MccJ25 could be an effective alternative for mitigating and prevention of Salmonella and E. coli infection in food, animal and agriculture applications.
topic Salmonella
Escherichia coli O157:H7
recombinant microcin J25
antimicrobial activity
biological environments
stability
url https://www.frontiersin.org/article/10.3389/fmicb.2019.01954/full
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spelling doaj-94ccd37326664d068de88000cdbd30432020-11-25T01:26:24ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2019-08-011010.3389/fmicb.2019.01954453612A Comprehensive Antimicrobial Activity Evaluation of the Recombinant Microcin J25 Against the Foodborne Pathogens Salmonella and E. coli O157:H7 by Using a Matrix of ConditionsHaitao Yu0Haitao Yu1Haitao Yu2Ning Li3Ning Li4Ning Li5Xiangfang Zeng6Xiangfang Zeng7Xiangfang Zeng8Lu Liu9Lu Liu10Lu Liu11Yuming Wang12Yuming Wang13Yuming Wang14Gang Wang15Gang Wang16Gang Wang17Shuang Cai18Shuang Cai19Shuang Cai20Shuo Huang21Shuo Huang22Shuo Huang23Xiuliang Ding24Xiuliang Ding25Xiuliang Ding26Qinglong Song27Qinglong Song28Qinglong Song29Shiyan Qiao30Shiyan Qiao31Shiyan Qiao32State Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, ChinaMinistry of Agriculture and Rural Affairs Feed Industry Centre, China Agricultural University, Beijing, ChinaBeijing Key Laboratory of Bio-Feed Additives, Beijing, ChinaState Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, ChinaMinistry of Agriculture and Rural Affairs Feed Industry Centre, China Agricultural University, Beijing, ChinaBeijing Key Laboratory of Bio-Feed Additives, Beijing, ChinaState Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, ChinaMinistry of Agriculture and Rural Affairs Feed Industry Centre, China Agricultural University, Beijing, ChinaBeijing Key Laboratory of Bio-Feed Additives, Beijing, ChinaState Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, ChinaMinistry of Agriculture and Rural Affairs Feed Industry Centre, China Agricultural University, Beijing, ChinaBeijing Key Laboratory of Bio-Feed Additives, Beijing, ChinaState Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, ChinaMinistry of Agriculture and Rural Affairs Feed Industry Centre, China Agricultural University, Beijing, ChinaBeijing Key Laboratory of Bio-Feed Additives, Beijing, ChinaState Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, ChinaMinistry of Agriculture and Rural Affairs Feed Industry Centre, China Agricultural University, Beijing, ChinaBeijing Key Laboratory of Bio-Feed Additives, Beijing, ChinaState Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, ChinaMinistry of Agriculture and Rural Affairs Feed Industry Centre, China Agricultural University, Beijing, ChinaBeijing Key Laboratory of Bio-Feed Additives, Beijing, ChinaState Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, ChinaMinistry of Agriculture and Rural Affairs Feed Industry Centre, China Agricultural University, Beijing, ChinaBeijing Key Laboratory of Bio-Feed Additives, Beijing, ChinaState Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, ChinaMinistry of Agriculture and Rural Affairs Feed Industry Centre, China Agricultural University, Beijing, ChinaBeijing Key Laboratory of Bio-Feed Additives, Beijing, ChinaState Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, ChinaMinistry of Agriculture and Rural Affairs Feed Industry Centre, China Agricultural University, Beijing, ChinaBeijing Key Laboratory of Bio-Feed Additives, Beijing, ChinaState Key Laboratory of Animal Nutrition, China Agricultural University, Beijing, ChinaMinistry of Agriculture and Rural Affairs Feed Industry Centre, China Agricultural University, Beijing, ChinaBeijing Key Laboratory of Bio-Feed Additives, Beijing, ChinaNatural microcin J25 (MccJ25) represent promising alternatives to traditional antibiotics for the treatment of drug-resistant infections. However, little is known about the antibacterial activity of recombinant MccJ25 against foodborne pathogens. Here, the activity of recombinant MccJ25 was examined using a matrix of conditions in order to assess the efficacy of recombinant MccJ25 as a mitigation against foodborne pathogens, such as Salmonella species and Escherichia coli (E. coli) O157:H7. Results showed that recombinant MccJ25 displayed excellent antimicrobial activity against these foodborne pathogens, including clinical isolates of Salmonella and E. coli, as well as clinical antibiotic-resistant Salmonella and E. coli isolates with different minimal inhibitory concentrations. In addition, antimicrobial activity curves and Live/Dead assay evidenced that recombinant MccJ25 harbors strong bactericidal activity against Salmonella and E. coli O157:H7. Notably, recombinant MccJ25 also had great potency and induced fast mortality against different growth phase of Salmonella and E. coli. The stability analysis results showed that the activity of recombinant MccJ25 was not influenced by temperatures as high as 121°C. Varying the pH from 2.0 to 9.0 did not appear to affect the activity of recombinant MccJ25. Under the challenge of several proteases, simulated gastrointestinal fluids and serum, recombinant MccJ25 still maintained exceptionally strong antimicrobial activity. Significant reductions in Salmonella Pullorum levels were also achieved in food biological environments, such as milk, egg and meat. Moreover, we demonstrated that recombinant MccJ25 appeared to act by inducing membrane breaks, thinning, and disintegration in the Salmonella Pullorum cytoplasmic membrane. Taken together, these results indicated that recombinant MccJ25 could be an effective alternative for mitigating and prevention of Salmonella and E. coli infection in food, animal and agriculture applications.https://www.frontiersin.org/article/10.3389/fmicb.2019.01954/fullSalmonellaEscherichia coli O157:H7recombinant microcin J25antimicrobial activitybiological environmentsstability