Related Experiment Video
Updated: Jun 26, 2026

Coincubation Assay for Quantifying Competitive Interactions between Vibrio fischeri Isolates
Published on: July 22, 2019
Modulation of Vibrio mimicus hemolysin through limited proteolysis by an endogenous metalloprotease
Tamaki Mizuno1, Syed Z Sultan, Yoshimi Kaneko
1Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, Japan.
Abstract:
Vibrio mimicus is a causative agent of human gastroenteritis and food poisoning, and this species produces an enterotoxic hemolysin (V. mimicus hemolysin) as a virulence determinant. Vibrio mimicus hemolysin is secreted as an 80 kDa precursor, which is later converted to the 66 kDa mature toxin through removal of an N-terminal propeptide via cleavage of the Arg151-Ser152 bond. In this article, we investigate the role of the endogenous metalloprotease (V. mimicus protease) in the maturation of V. mimicus hemolysin. In vitro experiments using purified proteins showed that, although it activated the precursor at the early stage via cleavage of the Asn157-Val158 bond, V. mimicus protease finally converted the activated and physiologically maturated toxin to a 51 kDa protein through removal of the C-terminal polypeptide. This 51 kDa derivative was unable to lyse erythrocytes because of its inability to bind to the erythrocyte membrane. Vibrio mimicus protease-negative strains were found to produce high levels of V. mimicus hemolysin at the logarithmic phase of bacterial growth and maintained high hemolytic activity even at the stationary phase. These findings indicate that, although it is not directly related to toxin maturation in vivo, V. mimicus protease can modulate the activity of V. mimicus hemolysin and/or its precursor through limited proteolysis.
Insights
Vibrio mimicus protease does not directly mature hemolysin but can alter its activity. It inactivates the toxin by cleaving it into a non-lytic 51 kDa form, affecting bacterial virulence.
Area of Science:
- Microbiology
- Molecular Biology
- Protease Function
Background:
- Vibrio mimicus causes gastroenteritis and food poisoning.
- V. mimicus hemolysin is a key virulence factor, secreted as an 80 kDa precursor.
- Hemolysin maturation involves N-terminal propeptide removal, yielding a 66 kDa mature toxin.
Purpose of the Study:
- To investigate the role of V. mimicus protease in hemolysin maturation.
- To understand how V. mimicus protease influences hemolysin activity and bacterial virulence.
Main Methods:
- In vitro experiments using purified V. mimicus hemolysin precursor and V. mimicus protease.
- Analysis of hemolysin activity and protein size in protease-negative V. mimicus strains.
- Erythrocyte lysis assays to assess toxin function.
Main Results:
- V. mimicus protease activates the hemolysin precursor but ultimately cleaves it into a 51 kDa inactive form.
- The 51 kDa derivative cannot bind to erythrocyte membranes, losing hemolytic activity.
- Protease-negative strains exhibit higher hemolysin levels and sustained hemolytic activity.
Conclusions:
- V. mimicus protease modulates hemolysin activity through limited proteolysis, rather than direct in vivo maturation.
- The protease can inactivate the hemolysin, potentially impacting V. mimicus pathogenicity.
- Understanding protease-hemolysin interactions offers insights into bacterial virulence mechanisms.
Related Concept Videos
Regulation of Bacterial Virulence
Determinants of Bacterial Pathogenicity and Virulence
Gene Regulation in Microbial Communities: Quorum Sensing

