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PMID: 17233827 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Smooth to rugose phase variation in Vibrio cholerae can be mediated by a single nucleotide change that targets c-di-GMP signalling pathway.

Molecular microbiology ·Vol. 63 ·No. 4 ·2007-02-00 ·Pages 995-1007

Beyhan S, Yildiz FH

Abstract

Microorganisms use phase variation to increase population diversity to maximize evolutionary success. One such variation is the smooth to rugose phenotype change in Vibrio cholerae. We determined that the variation between smooth and rugose phenotypes can be controlled by a single nucleotide change in a gene (vpvC) predicted to encode a diguanylate cyclase. The vpvC allele found in the rugose genetic background is more active at producing c-di-GMP while that in smooth genetic background is less active. In support of this finding, disruption of vpvC in the rugose genetic variant decreases cellular c-di-GMP levels, diminishes rugose-associated phenotypes and yields a smooth variant. Furthermore, the frequency of phase variation decreases dramatically when the vpvC locus is deleted in the smooth genetic background. Evidence is presented that the rugose variant is less susceptible to phage infection than the smooth variant. As phage infection is known to control populations of V. cholerae and thus outbreaks of cholera, phase variation may increase the evolutionary success of the pathogen.

MeSH Terms
Bacterial Proteins/genetics,metabolism Bacteriophages/pathogenicity Biological Evolution Cyclic GMP/analogs & derivatives,metabolism Escherichia coli Proteins Genetic Variation Mutation Phenotype Phosphorus-Oxygen Lyases/genetics,metabolism Signal Transduction Vibrio cholerae/physiology,virology
Chemicals
Bacterial Proteins Escherichia coli Proteins bis(3',5')-cyclic diguanylic acid Phosphorus-Oxygen Lyases diguanylate cyclase Cyclic GMP
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Beyhan Sinem
Department of Environmental Toxicology, University of California, Santa Cruz, Santa Cruz, CA 95064, USA.
Yildiz Fitnat H
Article Info
Journal
Molecular microbiology
Abbr.
Mol Microbiol
ISSN
0950-382X
Published
2007-02-00
Pages
995-1007
Language
English
Region
England
NLM ID
8712028
Subset
IM
Grants
NIAID NIH HHS · R01 AI055987 · United States
NIAID NIH HHS · AI055987 · United States
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