Bacteria use membrane-integral sensor histidine kinases (HK) to perceive stimuli and transduce signals from the environment to the cytosol. Information on how the signal is transmitted across the membrane by HKs is still scarce. Combining both liquid- and solid-state NMR, we demonstrate that structural rearrangements in the extracytoplasmic, citrate-sensing Per-Arnt-Sim (PAS) domain of HK CitA are identical for the isolated domain in solution and in a longer construct containing the membrane-embedded HK and lacking only the kinase core. We show that upon citrate binding, the PAS domain contracts, resulting in a shortening of the C-terminal β-strand. We demonstrate that this contraction of the PAS domain, which is well characterized for the ...
Histidine kinases are sophisticated molecular sensors that are used by bacteria to detect and respon...
SummaryHistidine kinase receptors respond to diverse signals and mediate signal transduction across ...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Bacteria use membrane-integral sensor histidine kinases (HK) to perceive stimuli and transduce signa...
Perception of environmental changes and subsequent signal transduction are key aspects for the survi...
Sensor histidine kinases of two-component signal-transduction systems are essential for bacteria to ...
The mechanistic understanding of how membrane-embedded sensor kinases recognize signals and regulate...
International audienceOne of the major and essential classes of transmembrane (TM) receptors, presen...
Histidine kinases (HK) are the sensory proteins of two-component systems, responsible for a large fr...
The integral membrane sensor kinase CitA of Klebsiella pneumoniae is part of a two-component signal ...
The integral membrane sensor kinase CitA of Klebsiella pneumoniae is part of a two-component signal ...
Bacteria utilise two component systems (TCS) consisting of a homodimeric receptor histidine kinase ...
ConspectusHistidine kinases (HK) are the sensory proteins of two-component systems, responsible for ...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Transmembrane (TM) signaling is a key process of membrane-bound sensor kinases. The C4-dicarboxylate...
Histidine kinases are sophisticated molecular sensors that are used by bacteria to detect and respon...
SummaryHistidine kinase receptors respond to diverse signals and mediate signal transduction across ...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Bacteria use membrane-integral sensor histidine kinases (HK) to perceive stimuli and transduce signa...
Perception of environmental changes and subsequent signal transduction are key aspects for the survi...
Sensor histidine kinases of two-component signal-transduction systems are essential for bacteria to ...
The mechanistic understanding of how membrane-embedded sensor kinases recognize signals and regulate...
International audienceOne of the major and essential classes of transmembrane (TM) receptors, presen...
Histidine kinases (HK) are the sensory proteins of two-component systems, responsible for a large fr...
The integral membrane sensor kinase CitA of Klebsiella pneumoniae is part of a two-component signal ...
The integral membrane sensor kinase CitA of Klebsiella pneumoniae is part of a two-component signal ...
Bacteria utilise two component systems (TCS) consisting of a homodimeric receptor histidine kinase ...
ConspectusHistidine kinases (HK) are the sensory proteins of two-component systems, responsible for ...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Transmembrane (TM) signaling is a key process of membrane-bound sensor kinases. The C4-dicarboxylate...
Histidine kinases are sophisticated molecular sensors that are used by bacteria to detect and respon...
SummaryHistidine kinase receptors respond to diverse signals and mediate signal transduction across ...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...