Frontiers in Microbiology · 2010 · 42 citations · 44 references
Diarrheal Disease CholeraMedical MicrobiologyPathogen TransmissionVirulence FactorHuman Disease CholeraPathogenesisVibrio CholeraeMolecular BiologyPathogen CharacterizationMicrobiologyInfection ControlDisease CholeraMedicineClinical Microbiology
Vibrio cholerae, the marine bacterium responsible for the diarrheal disease cholera, utilizes a multitude of virulence factors to cause disease. The importance of two of these factors, the toxin co-regulated pilus (TCP) and cholera toxin (CT), has been well documented for pandemic O1 and epidemic O139 serogroups. In contrast, endemic non-O1 and non-O139 serogroups can cause localized outbreaks of cholera-like illness, often in the absence of TCP and CT. One virulence mechanism used by these strains is the type VI secretion system (T6SS) to export toxins across the cell envelope and confer toxicity toward eukaryotic and prokaryotic organisms. The V. cholerae strain V52 (an O37 serogroup strain) possesses a constitutively active T6SS and was responsible for an outbreak of gastroenteritis in Sudan in 1968. To evaluate a potential role of the T6SS in the disease cholera, we compared the T6SS clusters of V. cholerae strains with sequenced genomes. We found that the majority of V. cholerae strains, including one pandemic strain, contain intact T6SS gene clusters; thus, we propose that the T6SS is a conserved mechanism that allows pandemic and endemic V. cholerae to persist both in the host and in the environment.
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WHO estimates of the causes of death in children
Jennifer Bryce, Cynthia Boschi-Pinto, Kenji Shibuya et al. · The Lancet · 2005 · 2.1K citations
Stefan Pukatzki, Amy T., Derek Sturtevant et al. · Proceedings of the National Academy of Sciences · 2006 · 1.1K citations · Full text
Pathogenic Microbiology, Microbial Pathogens, Bacteriology +19