Two-component signal transduction systems (TCS) are vital for adaptive responses to various environmental stresses in bacteria, fungi and even plants. A TCS typically comprises of a sensor histidine kinase (SK) with its cognate response regulator (RR), which often has two domains-N terminal receiver domain (RD) and C terminal effector domain (ED). The histidine kinase phosphorylates the RD to activate the ED by promoting dimerization. However, despite significant progress on structural studies, how RR transmits activation signal from RD to ED remains elusive. Here we analyzed active to inactive transition process of OmpR/PhoB family using an active conformation of RegX3 from Mycobacterium tuberculosis as a model system by computational appr...
Two-component signaling systems (TCSs) are central to bacterial adaptation. However, the mechanisms ...
Bacteria use Two Component Systems (TCS) to sense and respond to changes in their external environme...
ChxR is an atypical two-component signal transduction response regulator (RR) of the OmpR/PhoB subfa...
<div><p>Two-component signal transduction systems (TCS) are vital for adaptive responses to various ...
The full-length, two-domain response regulator RegX3 from Mycobacterium tuberculosis is a dimer stab...
SummaryResponse regulators (RRs), which undergo phosphorylation/dephosphorylation at aspartate resid...
The PhoP–PhoR two-component system is essential for the virulence of Mycobacterium tuberculosis (<i>...
The N-terminal receiver domain of NtrC is the molecular switch in the two-component signal transduct...
M. tuberculosis oxidation sense Regulator (MosR) is a transcriptional regulator from Mycobacterium t...
In bacteria, two-component regulatory systems (TCSs) are the critical information-processing pathway...
M. tuberculosis (Mtb) senses and responds to changes in its environment primar-ily through two-compo...
International audienceTwo-component systems (TCS) are protein machineries that enable cells to respo...
AbstractBackground: A variety of bacterial adaptative cellular responses to environmental stimuli ar...
The Mycobacterium tuberculosis transcriptional regulator Rv1364c regulates the activity of the stres...
We describe the solution structures of two- and three-domain constructs of the sensor histidine kina...
Two-component signaling systems (TCSs) are central to bacterial adaptation. However, the mechanisms ...
Bacteria use Two Component Systems (TCS) to sense and respond to changes in their external environme...
ChxR is an atypical two-component signal transduction response regulator (RR) of the OmpR/PhoB subfa...
<div><p>Two-component signal transduction systems (TCS) are vital for adaptive responses to various ...
The full-length, two-domain response regulator RegX3 from Mycobacterium tuberculosis is a dimer stab...
SummaryResponse regulators (RRs), which undergo phosphorylation/dephosphorylation at aspartate resid...
The PhoP–PhoR two-component system is essential for the virulence of Mycobacterium tuberculosis (<i>...
The N-terminal receiver domain of NtrC is the molecular switch in the two-component signal transduct...
M. tuberculosis oxidation sense Regulator (MosR) is a transcriptional regulator from Mycobacterium t...
In bacteria, two-component regulatory systems (TCSs) are the critical information-processing pathway...
M. tuberculosis (Mtb) senses and responds to changes in its environment primar-ily through two-compo...
International audienceTwo-component systems (TCS) are protein machineries that enable cells to respo...
AbstractBackground: A variety of bacterial adaptative cellular responses to environmental stimuli ar...
The Mycobacterium tuberculosis transcriptional regulator Rv1364c regulates the activity of the stres...
We describe the solution structures of two- and three-domain constructs of the sensor histidine kina...
Two-component signaling systems (TCSs) are central to bacterial adaptation. However, the mechanisms ...
Bacteria use Two Component Systems (TCS) to sense and respond to changes in their external environme...
ChxR is an atypical two-component signal transduction response regulator (RR) of the OmpR/PhoB subfa...