Lasso Peptide Microcin J25 Effectively Enhances Gut Barrier Function and Modulates Inflammatory Response in an
Xiuliang Ding1,2, Haitao Yu1,2, Shiyan Qiao1,2
1State Key Laboratory of Animal Nutrition, Ministry of Agriculture Feed Industry Center, China Agricultural University, Beijing 100193, China.
Abstract:
Bacterial resistance leads to severe public health and safety issues worldwide. Alternatives to antibiotics are currently needed. A promising lasso peptide, microcin J25 (MccJ25), is considered to be the best potential substitute for antibiotics to treat pathogen infection, including enterotoxigenic Escherichia coli (ETEC). This study evaluated the efficacy of MccJ25 in the prevention of ETEC infection. Forty-five female BALB/c mice of clean grade (aged seven weeks, approximately 16.15 g) were randomly divided into three experimental groups as follows: (i) control group (uninfected); (ii) ETEC infection group; (iii) MccJ25 + ETEC group. Fifteen mice per group in five cages, three mice/cage. MccJ25 conferred effective protection against ETEC-induced body weight loss, decrease in rectal temperature and increase in diarrhea scores in mice. Moreover, in ETEC-challenged mice model, MccJ25 significantly improved intestinal morphology, decreased intestinal histopathological scores and attenuated intestinal inflammation by decreasing proinflammatory cytokines and intestinal permeability, including reducing serum diamine oxidase and D-lactate levels. MccJ25 enhanced epithelial barrier function by increasing occludin expression in the colon and claudin-1 expression in the jejunum, ultimately improving intestinal health of host. MccJ25 was further found to alleviate gut inflammatory responses by decreasing inflammatory cytokine production and expression via the activation of the mitogen-activated protein kinase and nuclear factor κB signaling pathways. Taken together, the results indicated that MccJ25 protects against ETEC-induced intestinal injury and intestinal inflammatory responses, suggesting the potential application of MccJ25 as an excellent antimicrobial or anti-inflammation agent against pathogen infections.
Insights
Microcin J25 (MccJ25) effectively protects mice against enterotoxigenic Escherichia coli (ETEC) infection. This promising antibiotic alternative improves gut health and reduces inflammation, showing potential for treating bacterial infections.
Area of Science:
- Microbiology
- Immunology
- Pharmacology
Background:
- Antibiotic resistance poses a global health threat, necessitating novel antimicrobial agents.
- Microcin J25 (MccJ25), a lasso peptide, shows potential as an alternative to antibiotics for treating bacterial infections.
- Enterotoxigenic Escherichia coli (ETEC) is a significant cause of diarrheal diseases.
Purpose of the Study:
- To evaluate the efficacy of MccJ25 in preventing and treating ETEC infection in a mouse model.
- To investigate the mechanisms by which MccJ25 exerts its protective effects on the intestinal tract.
Main Methods:
- A mouse model of ETEC infection was established.
- Mice were divided into control, ETEC-infected, and MccJ25-treated ETEC-infected groups.
- Efficacy was assessed by monitoring body weight, rectal temperature, diarrhea scores, intestinal morphology, histopathology, cytokine levels, intestinal permeability markers, and epithelial barrier protein expression.
Main Results:
- MccJ25 treatment significantly protected against ETEC-induced body weight loss, hypothermia, and diarrhea.
- MccJ25 improved intestinal morphology, reduced histopathological damage, and decreased inflammation by lowering proinflammatory cytokines and intestinal permeability.
- MccJ25 enhanced epithelial barrier function by upregulating occludin and claudin-1 expression and modulated inflammatory signaling pathways.
Conclusions:
- MccJ25 demonstrates significant protective effects against ETEC-induced intestinal injury and inflammation in mice.
- MccJ25 enhances intestinal barrier function and alleviates inflammatory responses.
- MccJ25 holds potential as a valuable antimicrobial or anti-inflammatory agent for treating pathogen infections.
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