International audienceBacteria coordinate expression of virulence determinants in response to localized microenvironments in their hosts. Here we show that Shigella flexneri, which causes dysentery, encounters varying oxygen concentrations in the gastrointestinal tract, which govern activity of its type three secretion system (T3SS). The T3SS is essential for cell invasion and virulence. In anaerobic environments (for example, the gastrointestinal tract lumen), Shigella is primed for invasion and expresses extended T3SS needles while reducing Ipa (invasion plasmid antigen) effector secretion. This is mediated by FNR (fumarate and nitrate reduction), a regulator of anaerobic metabolism that represses transcription of spa32 and spa33, virulen...
SummaryNumerous pathogenic Gram-negative bacteria use a type three secretion apparatus (T3SA) to tra...
Invasion and plaque formation in epithelial monolayers are routinely used to assess the virulence of...
Shigella flexneri is a gram negative bacterial pathogen and is the causative agent of bacillary dyse...
Bacteria coordinate expression of virulence determinants in response to localized microenvironments ...
Bacteria coordinate expression of virulence determinants in response to localized microenvironments ...
Bacteria coordinate expression of virulence determinants in response to localized microenvironments ...
International audiencePathogenic enterobacteria face various oxygen (O2) levels during intestinal co...
International audiencePathogenic enterobacteria face various oxygen (O2) levels during intestinal co...
Shigella flexneri is a human pathogen that triggers its own entry into intestinal cells and escapes ...
Shigella flexneri is a human pathogen that triggers its own entry into intestinal cells and escapes ...
International audienceIntracellular trafficking pathways in eukaryotic cells are essential to mainta...
International audienceIntracellular trafficking pathways in eukaryotic cells are essential to mainta...
International audienceIntracellular trafficking pathways in eukaryotic cells are essential to mainta...
International audienceIntracellular trafficking pathways in eukaryotic cells are essential to mainta...
Shigella,a major cause of bacterial dysentery, knows when it is not wanted. To generate and maintain...
SummaryNumerous pathogenic Gram-negative bacteria use a type three secretion apparatus (T3SA) to tra...
Invasion and plaque formation in epithelial monolayers are routinely used to assess the virulence of...
Shigella flexneri is a gram negative bacterial pathogen and is the causative agent of bacillary dyse...
Bacteria coordinate expression of virulence determinants in response to localized microenvironments ...
Bacteria coordinate expression of virulence determinants in response to localized microenvironments ...
Bacteria coordinate expression of virulence determinants in response to localized microenvironments ...
International audiencePathogenic enterobacteria face various oxygen (O2) levels during intestinal co...
International audiencePathogenic enterobacteria face various oxygen (O2) levels during intestinal co...
Shigella flexneri is a human pathogen that triggers its own entry into intestinal cells and escapes ...
Shigella flexneri is a human pathogen that triggers its own entry into intestinal cells and escapes ...
International audienceIntracellular trafficking pathways in eukaryotic cells are essential to mainta...
International audienceIntracellular trafficking pathways in eukaryotic cells are essential to mainta...
International audienceIntracellular trafficking pathways in eukaryotic cells are essential to mainta...
International audienceIntracellular trafficking pathways in eukaryotic cells are essential to mainta...
Shigella,a major cause of bacterial dysentery, knows when it is not wanted. To generate and maintain...
SummaryNumerous pathogenic Gram-negative bacteria use a type three secretion apparatus (T3SA) to tra...
Invasion and plaque formation in epithelial monolayers are routinely used to assess the virulence of...
Shigella flexneri is a gram negative bacterial pathogen and is the causative agent of bacillary dyse...