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Published in: Gut Pathogens 1/2019

Open Access 01-12-2019 | Cholera | Research

Nonhemolysis of epidemic El Tor biotype strains of Vibrio cholerae is related to multiple functional deficiencies of hemolysin A

Authors: Yufeng Fan, Zhenpeng Li, Zhe Li, Xu Li, Huihui Sun, Jie Li, Xin Lu, Weili Liang, Biao Kan

Published in: Gut Pathogens | Issue 1/2019

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Abstract

Background

Hemolysis of bacteria is an important phenotype used for typing and characterizing strains with specific biomarkers and even a virulence factor in bacterial pathogenesis. In Vibrio cholerae, hemolysin HlyA is responsible for hemolysis of sheep red blood cells, and this hemolytic phenotype is used as a biotyping indicator and considered one of the virulence factors. At the beginning of the seventh cholera pandemic, the El Tor biotype strains of serogroup O1 were distinguished by hemolysis from the sixth pandemic O1 classical biotype strains, whereas during the following epidemics, nonhemolytic El Tor strains appeared, suggesting phenotypic and genetic variations in these strains. This study aimed to investigate the possible mechanisms involved in nonhemolysis of El Tor strains.

Results

Five sequence types of hlyA genes were found in the studied O1 El Tor strains isolated during the seventh pandemic. A 4-base deletion in hlyA caused the HlyA protein mutation and non-hemolytic phenotype. Some strains carry wildtype hlyA genes but are still non-hemolytic, and greatly reduced hlyA transcription and blocked secretion of hemolysin were observed in hemolysis tests of the subcellular components and transcription/expression analysis of hlyA.

Conclusions

Mechanisms responsible for nonhemolysis of the epidemic O1 El Tor strains are complex and not only confined to gene mutation but also deficiencies of transcription and extracellular transport of HlyA. Mutations in gene regulation and protein secretion systems of HlyA in the nonhemolytic V. cholerae strains should be areas of concern in future studies.
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Metadata
Title
Nonhemolysis of epidemic El Tor biotype strains of Vibrio cholerae is related to multiple functional deficiencies of hemolysin A
Authors
Yufeng Fan
Zhenpeng Li
Zhe Li
Xu Li
Huihui Sun
Jie Li
Xin Lu
Weili Liang
Biao Kan
Publication date
01-12-2019
Publisher
BioMed Central
Published in
Gut Pathogens / Issue 1/2019
Electronic ISSN: 1757-4749
DOI
https://doi.org/10.1186/s13099-019-0316-7

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