Two-component signal transduction involves phosphoryl transfer between a histidine kinase sensor and a response regulator effector. The nitrate-responsive two-component signal transduction systems in Escherichia coli represent a paradigm for a cross-regulation network, in which the paralogous sensor–response regulator pairs, NarX–NarL and NarQ–NarP, exhibit both cognate (e.g. NarX–NarL) and non-cognate (e.g. NarQ–NarL) interactions to control output. Here, we describe results from bacterial adenylate cyclase two-hybrid (BACTH) analysis to examine sensor dimerization as well as interaction between sensor–response regulator cognate and non-cognate pairs. Although results from BACTH analysis indicated that the NarX and NarQ sensors interact wi...
UnlabelledIn two-component signal transduction, a sensor protein transmitter module controls cognate...
Perceiving environmental and internal information and reacting in adaptive ways are essential attrib...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
Two-component signal transduction involves phosphoryl transfer between a histidine kinase sensor and...
Phosphoryl transfer from a histidine kinase to a response regulator in two-component signaling syste...
Bacteria sense and respond to a variety of environmental stimuli through two-component systems, whic...
SummaryHistidine kinase receptors are a large family of membrane-spanning proteins found in many pro...
Many bacteria possess large numbers of two-component signalling systems, which are composed of histi...
International audienceMembrane-embedded sensor histidine kinases (HKs) and chemoreceptors are used u...
Two-component systems play a central part in bacterial signal transduction. Phosphorelay mechanisms ...
Two-component systems (TCSs) are critical for bacteria to interact with their extracellular environ...
SummaryThe chief mechanism used by bacteria for sensing their environment is based on two conserved ...
Two-component signal transduction systems enable bacteria to sense and respond to a wide range of en...
Two-component systems play a central part in bacterial signal transduction. Phosphorelay mechanisms ...
Bacteria use Two Component Systems (TCS) to sense and respond to changes in their external environme...
UnlabelledIn two-component signal transduction, a sensor protein transmitter module controls cognate...
Perceiving environmental and internal information and reacting in adaptive ways are essential attrib...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
Two-component signal transduction involves phosphoryl transfer between a histidine kinase sensor and...
Phosphoryl transfer from a histidine kinase to a response regulator in two-component signaling syste...
Bacteria sense and respond to a variety of environmental stimuli through two-component systems, whic...
SummaryHistidine kinase receptors are a large family of membrane-spanning proteins found in many pro...
Many bacteria possess large numbers of two-component signalling systems, which are composed of histi...
International audienceMembrane-embedded sensor histidine kinases (HKs) and chemoreceptors are used u...
Two-component systems play a central part in bacterial signal transduction. Phosphorelay mechanisms ...
Two-component systems (TCSs) are critical for bacteria to interact with their extracellular environ...
SummaryThe chief mechanism used by bacteria for sensing their environment is based on two conserved ...
Two-component signal transduction systems enable bacteria to sense and respond to a wide range of en...
Two-component systems play a central part in bacterial signal transduction. Phosphorelay mechanisms ...
Bacteria use Two Component Systems (TCS) to sense and respond to changes in their external environme...
UnlabelledIn two-component signal transduction, a sensor protein transmitter module controls cognate...
Perceiving environmental and internal information and reacting in adaptive ways are essential attrib...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...