Two-component systems (TCS) based on a sensor histidine kinase and a phosphorylated cognate target regulator allow rapid responses to environmental changes. TCS are highly evolutionarily conserved, though in only a few cases are the inducing signals understood. This study focuses on the Escherichia coli CpxR response regulator that responds to periplasmic and outer-membrane stress. N-terminal deletion mutations have been isolated that render the transcription factor constitutively active, indicating that the N terminus functions, in part, to keep the C-terminal winged-helix DNA-binding effector domain in an inactive state. Analysis of truncations spanning the CpxR interdomain region revealed that mutants retaining the alpha5 helix significa...
Two-component signal transduction systems are widespread in bacteria and are essential regulatory me...
The Vibrio cholerae transcriptional regulator ToxR is anchored in the cytoplasmic membrane by a sing...
In bacteria, two-component regulatory systems (TCSs) are the critical information-processing pathway...
We show that the two-component signal transduction system of Escherichia coli, CpxA-CpxR, controls t...
In Escherichia coli, the CpxA-CpxR two-component signal transduction system and the sE and s32 respo...
Bacteria sense and respond to a variety of environmental stimuli through two-component systems, whic...
Many bacteria possess large numbers of two-component signalling systems, which are composed of histi...
<div><p>Two-component systems, consisting of an inner membrane sensor kinase and a cytosolic respons...
Bacteria use Two Component Systems (TCS) to sense and respond to changes in their external environme...
Escherichia coli uses two-component systems (TCSs) to respond to environmental signals. TCSs affect ...
ChxR is an atypical two-component signal transduction response regulator (RR) of the OmpR/PhoB subfa...
<div><p>ChxR is an atypical two-component signal transduction response regulator (RR) of the OmpR/Ph...
ChxR is an atypical two-component signal transduction response regulator (RR) of the OmpR/PhoB subfa...
Two-component signal transduction involves phosphoryl transfer between a histidine kinase sensor and...
Two-component signal transduction involves phosphoryl transfer between a histidine kinase sensor and...
Two-component signal transduction systems are widespread in bacteria and are essential regulatory me...
The Vibrio cholerae transcriptional regulator ToxR is anchored in the cytoplasmic membrane by a sing...
In bacteria, two-component regulatory systems (TCSs) are the critical information-processing pathway...
We show that the two-component signal transduction system of Escherichia coli, CpxA-CpxR, controls t...
In Escherichia coli, the CpxA-CpxR two-component signal transduction system and the sE and s32 respo...
Bacteria sense and respond to a variety of environmental stimuli through two-component systems, whic...
Many bacteria possess large numbers of two-component signalling systems, which are composed of histi...
<div><p>Two-component systems, consisting of an inner membrane sensor kinase and a cytosolic respons...
Bacteria use Two Component Systems (TCS) to sense and respond to changes in their external environme...
Escherichia coli uses two-component systems (TCSs) to respond to environmental signals. TCSs affect ...
ChxR is an atypical two-component signal transduction response regulator (RR) of the OmpR/PhoB subfa...
<div><p>ChxR is an atypical two-component signal transduction response regulator (RR) of the OmpR/Ph...
ChxR is an atypical two-component signal transduction response regulator (RR) of the OmpR/PhoB subfa...
Two-component signal transduction involves phosphoryl transfer between a histidine kinase sensor and...
Two-component signal transduction involves phosphoryl transfer between a histidine kinase sensor and...
Two-component signal transduction systems are widespread in bacteria and are essential regulatory me...
The Vibrio cholerae transcriptional regulator ToxR is anchored in the cytoplasmic membrane by a sing...
In bacteria, two-component regulatory systems (TCSs) are the critical information-processing pathway...