Identification and Characterization of OscR, a Transcriptional Regulator Involved in Osmolarity Adaptation in Vibrio cholerae
Author(s) -
Nicholas J. Shikuma,
Fitnat H. Yildiz
Publication year - 2009
Publication title -
journal of bacteriology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.652
H-Index - 246
eISSN - 1067-8832
pISSN - 0021-9193
DOI - 10.1128/jb.01540-08
Subject(s) - vibrio cholerae , biology , biofilm , regulator , virulence , vibrionaceae , microbiology and biotechnology , osmotic concentration , mutant , gene , response regulator , motility , transcriptional regulation , genetics , biochemistry , gene expression , bacteria
Vibrio cholerae is a facultative human pathogen. In its aquatic habitat and as it passes through the digestive tract,V. cholerae must cope with fluctuations in salinity. We analyzed the genome-wide transcriptional profile ofV. cholerae grown at different NaCl concentrations and determined that the expression of compatible solute biosynthesis and transporter genes, virulence genes, and genes involved in adhesion and biofilm formation is differentially regulated. We determined that salinity modulates biofilm formation, and this response was mediated through the transcriptional regulators VpsR and VpsT. Additionally, a transcriptional regulator controlling an osmolarity adaptation response was identified. This regulator, OscR (os molarityc ontrolledr egulator), was found to modulate the transcription of genes involved in biofilm matrix production and motility in a salinity-dependent manner.oscR mutants were less motile and exhibited enhanced biofilm formation only under low-salt conditions.
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