Escherichia coli comprise a diverse array of both commensals and niche-specific pathotypes. The ability to cause disease results from both carriage of specific virulence factors and regulatory control of these via environmental stimuli. Moreover, host metabolites further refine the response of bacteria to their environment and can dramatically affect the outcome of the host-pathogen interaction. Here, we demonstrate that the host metabolite, D-serine, selectively affects gene expression in E. Coli O157:H7. Transcriptomic profiling showed exposure to D-serine results in activation of the SOS response and suppresses expression of the Type 3 Secretion System (T3SS) used to attach to host cells. We also show that concurrent carriage of both the...
The urinary tract environment provides many conditions that deter colonization by microorganisms. D-...
<div><p>The urinary tract environment provides many conditions that deter colonization by microorgan...
<p>(A) Genomic context of the D-serine tolerance locus (blue) in three distinct <i>E</i>. <i>coli</i...
Escherichia coli comprise a diverse array of both commensals and niche-specific pathotypes. The abil...
Appropriate interpretation of environmental signals facilitates niche specificity in pathogenic bact...
Escherichia coli is a diverse bacterial species found largely as a harmless commensal in the gastroi...
The molecular environment of the host can have profound effects on the behavior of resident bacteria...
The ability of any organism to sense and respond to challenges presented in the environment is criti...
The ability of any organism to sense and respond to challenges presented in the environment is criti...
Sensing environmental stimuli is critically important for bacteria when faced with the multitude of ...
We recently discovered that exposure of enterohemorrhagic Escherichia coli (EHEC) to D-serine result...
Within the mammalian host, bacteria are exposed to a large number of nutritional and chemical stimul...
The ability of any organism to sense and respond to challenges presented in the environ-ment is crit...
Ecologically beneficial traits in bacteria are encoded by intrinsic and horizontally acquired genes....
Phenotypic and genetic heterogeneities are conserved features of prokaryotic populations. During per...
The urinary tract environment provides many conditions that deter colonization by microorganisms. D-...
<div><p>The urinary tract environment provides many conditions that deter colonization by microorgan...
<p>(A) Genomic context of the D-serine tolerance locus (blue) in three distinct <i>E</i>. <i>coli</i...
Escherichia coli comprise a diverse array of both commensals and niche-specific pathotypes. The abil...
Appropriate interpretation of environmental signals facilitates niche specificity in pathogenic bact...
Escherichia coli is a diverse bacterial species found largely as a harmless commensal in the gastroi...
The molecular environment of the host can have profound effects on the behavior of resident bacteria...
The ability of any organism to sense and respond to challenges presented in the environment is criti...
The ability of any organism to sense and respond to challenges presented in the environment is criti...
Sensing environmental stimuli is critically important for bacteria when faced with the multitude of ...
We recently discovered that exposure of enterohemorrhagic Escherichia coli (EHEC) to D-serine result...
Within the mammalian host, bacteria are exposed to a large number of nutritional and chemical stimul...
The ability of any organism to sense and respond to challenges presented in the environ-ment is crit...
Ecologically beneficial traits in bacteria are encoded by intrinsic and horizontally acquired genes....
Phenotypic and genetic heterogeneities are conserved features of prokaryotic populations. During per...
The urinary tract environment provides many conditions that deter colonization by microorganisms. D-...
<div><p>The urinary tract environment provides many conditions that deter colonization by microorgan...
<p>(A) Genomic context of the D-serine tolerance locus (blue) in three distinct <i>E</i>. <i>coli</i...