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Identification and Characterization of OscR a Transcriptional Regulator Involved in Osmolarity Adaptation in Vibrio cholerae

机译:鉴定和表征OscR一种涉及霍乱弧菌渗透压适应的转录调节因子。

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摘要

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 of V. 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 (osmolarity controlled regulator), 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.
机译:霍乱弧菌是一种兼性的人类病原体。在其水生生境中以及通过消化道时,霍乱弧菌必须应对盐度的波动。我们分析了在不同NaCl浓度下生长的霍乱弧菌的全基因组转录谱,并确定了相容性溶质生物合成和转运蛋白基因,毒力基因以及参与粘附和生物膜形成的基因的表达受到了不同的调节。我们确定盐度调节生物膜的形成,并且此反应是通过转录调节因子VpsR和VpsT介导的。另外,鉴定了控制渗透压适应反应的转录调节子。发现该调节剂OscR(渗透压控制调节剂)以盐度依赖性方式调节参与生物膜基质产生和运动的基因的转录。 oscR突变体的运动能力较弱,并且仅在低盐条件下才表现出增强的生物膜形成。

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