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Updated: Jun 15, 2025

Legionella pneumophila Outer Membrane Vesicles: Isolation and Analysis of Their Pro-inflammatory Potential on Macrophages
Published on: February 22, 2017
C-ter100 peptide derived from Vibrio vEP-45 protease acts as a pathogen-associated molecular pattern to induce
Jung Eun Park1,2, Ji-Hye Yun3,4, Weontae Lee3
1Department of Biomedical Science, College of Natural Sciences and Public Health and Safety, Chosun University, Gwangju, Republic of Korea.
Abstract:
The bacterium Vibrio vulnificus causes fatal septicemia in humans. Previously, we reported that an extracellular metalloprotease, vEP-45, secreted by V. vulnificus, undergoes self-proteolysis to generate a 34 kDa protease (vEP-34) by losing its C-terminal domain to produce the C-ter100 peptide. Moreover, we revealed that vEP-45 and vEP-34 proteases induce blood coagulation and activate the kallikrein/kinin system. However, the role of the C-ter100 peptide fragment released from vEP-45 in inducing inflammation is still unclear. Here, we elucidate, for the first time, the effects of C-ter100 on inducing inflammation and activating host innate immunity. Our results showed that C-ter100 could activate NF-κB by binding to the receptor TLR4, thereby promoting the secretion of inflammatory cytokines and molecules, such as TNF-α and nitric oxide (NO). Furthermore, C-ter100 could prime and activate the NLRP3 inflammasome (NLRP3, ASC, and caspase 1), causing IL-1β secretion. In mice, C-ter100 induced the recruitment of immune cells, such as neutrophils and monocytes, along with histamine release into the plasma. Furthermore, the inflammatory response induced by C-ter100 could be effectively neutralized by an anti-C-ter100 monoclonal antibody (C-ter100Mab). These results demonstrate that C-ter100 can be a pathogen-associated molecular pattern (PAMP) that activates an innate immune response during Vibrio infection and could be a target for the development of antibiotics.
Insights
The C-ter100 peptide from Vibrio vulnificus activates innate immunity by binding TLR4 and NLRP3, causing inflammation. This pathogen-associated molecular pattern can be targeted for new antibiotic development.
Area of Science:
- Microbiology
- Immunology
- Biochemistry
Background:
- Vibrio vulnificus causes fatal human septicemia.
- vEP-45 protease self-proteolysis yields vEP-34 and C-ter100 peptide.
- vEP-45 and vEP-34 activate blood coagulation and the kallikrein/kinin system.
Purpose of the Study:
- To investigate the role of the C-ter100 peptide in inflammation and host innate immunity activation.
- To determine the molecular mechanisms by which C-ter100 induces inflammatory responses.
Main Methods:
- In vitro assays to assess NF-κB activation, TLR4 binding, and inflammasome activation (NLRP3, ASC, caspase 1).
- Measurement of cytokine (TNF-α) and nitric oxide (NO) secretion.
- In vivo studies in mice to evaluate immune cell recruitment and histamine release.
- Neutralization assay using anti-C-ter100 monoclonal antibody (C-ter100Mab).
Main Results:
- C-ter100 activates NF-κB via TLR4, promoting TNF-α and NO secretion.
- C-ter100 primes and activates the NLRP3 inflammasome, leading to IL-1β secretion.
- C-ter100 induces neutrophil and monocyte recruitment and histamine release in mice.
- An anti-C-ter100 monoclonal antibody effectively neutralizes C-ter100-induced inflammation.
Conclusions:
- C-ter100 acts as a pathogen-associated molecular pattern (PAMP) that triggers innate immune responses during Vibrio infection.
- C-ter100 is a key mediator of inflammation induced by V. vulnificus.
- C-ter100 represents a potential therapeutic target for developing novel antibiotics against Vibrio infections.
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