The Bacillus subtilis KinA protein is a histidine protein kinase that controls the commitment of this organism to sporulate in response to nutrient deprivation and several other conditions. Prior studies indicated that the N-terminal Per-ARNT-Sim domain (PAS-A) plays a critical role in the catalytic activity of this enzyme, as demonstrated by the significant decrease of the autophosphorylation rate of a KinA protein lacking this domain. On the basis of the environmental sensing role played by PAS domains in a wide range of proteins, including other bacterial sensor kinases, it has been suggested that the PAS-A domain plays an important regulatory role in KinA function. We have investigated this potential by using a combination of biophysica...
The mechanistic understanding of how membrane-embedded sensor kinases recognize signals and regulate...
SummaryWe determined the structure of the complex of the sensory histidine kinase (HK) and its cogna...
In response to nutrient deprivation, Bacillus subtilis cells undergo differentiation to form biofilm...
The Bacillus subtilis KinA protein is a histidine protein kinase that controls the commitment of thi...
Histidine kinases are sophisticated molecular sensors that are used by bacteria to detect and respon...
Histidine kinases are sophisticated molecular sensors that are used by bacteria to detect and respon...
The Bacillus subtilis histidine kinase KinA controls activation of the transcription factor governin...
The Bacillus subtilis histidine kinase KinA controls activation of the transcription factor governin...
Histidine kinases are used extensively in prokaryotes to monitor and respond to changes in cellular ...
Upon starvation, Bacillus subtilis cells switch from growth to sporulation. It is believed that the ...
International audienceSignal transduction proteins such as bacterial sensor histidine kinases, desig...
DesK is a sensor histidine kinase (HK) that allows Bacillus subtilis to respond to cold shock, trigg...
AbstractHistidine kinases allow bacteria, plants, and fungi to sense and respond to their environmen...
his scription factor governing sporulation, Spo0A. The decision to sporulate scattering and neutron ...
In Bacillus subtilis, the KipI protein is a regulator of the phosphorelay governing the onset of spo...
The mechanistic understanding of how membrane-embedded sensor kinases recognize signals and regulate...
SummaryWe determined the structure of the complex of the sensory histidine kinase (HK) and its cogna...
In response to nutrient deprivation, Bacillus subtilis cells undergo differentiation to form biofilm...
The Bacillus subtilis KinA protein is a histidine protein kinase that controls the commitment of thi...
Histidine kinases are sophisticated molecular sensors that are used by bacteria to detect and respon...
Histidine kinases are sophisticated molecular sensors that are used by bacteria to detect and respon...
The Bacillus subtilis histidine kinase KinA controls activation of the transcription factor governin...
The Bacillus subtilis histidine kinase KinA controls activation of the transcription factor governin...
Histidine kinases are used extensively in prokaryotes to monitor and respond to changes in cellular ...
Upon starvation, Bacillus subtilis cells switch from growth to sporulation. It is believed that the ...
International audienceSignal transduction proteins such as bacterial sensor histidine kinases, desig...
DesK is a sensor histidine kinase (HK) that allows Bacillus subtilis to respond to cold shock, trigg...
AbstractHistidine kinases allow bacteria, plants, and fungi to sense and respond to their environmen...
his scription factor governing sporulation, Spo0A. The decision to sporulate scattering and neutron ...
In Bacillus subtilis, the KipI protein is a regulator of the phosphorelay governing the onset of spo...
The mechanistic understanding of how membrane-embedded sensor kinases recognize signals and regulate...
SummaryWe determined the structure of the complex of the sensory histidine kinase (HK) and its cogna...
In response to nutrient deprivation, Bacillus subtilis cells undergo differentiation to form biofilm...