Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane-spanning sensor histidine kinase and a cytoplasmic response regulator. The histidine kinase, PhoQ, serves as a master regulator of virulence response in S. typhimurium and E. coli. It also is inhibited by divalent cations, particularly Mg2+. While the periplasmic sensor domain of this protein has a unique function, the cytoplasmic portion of this modular protein is made of structurally conserved domains found in many other bacterial sensor kinases. Signal transduction through these conserved domains is thought to be universal; however, the structural and energetic rearrangements that occur during signaling have generated numerous models. Thr...
The PhoQ/PhoP two-component system plays a vital role in the regulation of Mg2 + homeostasis, resist...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding the principles underlying the plasticity of signal transduction networks is fun-dament...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Bacteria transduce signals across the membrane using two-component systems (TCSs), consisting of a m...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
Two-component systems represent the dominant mechanism for cellular signal transduction in prokaryot...
Two-component signal transduction systems (TCSs) are widely conserved in bacteria to respond to and ...
SummaryTwo-component regulatory systems are commonly used by bacteria to sense and respond to their ...
Two-component systems represent the dominant mechanism for cellular signal transduction in prokaryot...
This work focuses on a structure and a function of prokaryotic signal systems. There are three types...
Histidine kinases (HK) are the sensory proteins of two-component systems, responsible for a large fr...
Cells use a variety of different mechanisms to sense and respond to the constantly changing environm...
The PhoQ/PhoP two-component system plays a vital role in the regulation of Mg2 + homeostasis, resist...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding the principles underlying the plasticity of signal transduction networks is fun-dament...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Bacteria transduce signals across the membrane using two-component systems (TCSs), consisting of a m...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
Two-component systems represent the dominant mechanism for cellular signal transduction in prokaryot...
Two-component signal transduction systems (TCSs) are widely conserved in bacteria to respond to and ...
SummaryTwo-component regulatory systems are commonly used by bacteria to sense and respond to their ...
Two-component systems represent the dominant mechanism for cellular signal transduction in prokaryot...
This work focuses on a structure and a function of prokaryotic signal systems. There are three types...
Histidine kinases (HK) are the sensory proteins of two-component systems, responsible for a large fr...
Cells use a variety of different mechanisms to sense and respond to the constantly changing environm...
The PhoQ/PhoP two-component system plays a vital role in the regulation of Mg2 + homeostasis, resist...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding the principles underlying the plasticity of signal transduction networks is fun-dament...