We have used the yeast two-hybrid system to analyze protein-protein interactions mediated by domains of regulatory proteins of the ntr signal transduction system, including interactions among NtrB derivatives and their interactions with NtrC and PII from Klebsiella pneumoniae. Interactions took place only between proteins or protein domains belonging to the ntr signal transduction system and not between proteins or domains from noncognate regulators. NtrB and its transmitter domain, but not NtrC, CheA, or the cytoplasmic C terminus of EnvZ, interacted with PII. In addition, interaction of NtrB with NtrC, but not with PII, depended on the histidine phosphotransfer domain. Point mutation A129T, diminishing the NtrC phosphatase activity of Ntr...
Nitrogen limitation in Escherichia coli activates about 100 genes. Their expression requires the res...
The signal-transducing kinase/phosphatase nitrogen regulator 1I (NR,J or NtrB) is required for the e...
AbstractHistidine kinases allow bacteria, plants, and fungi to sense and respond to their environmen...
We have used the yeast two-hybrid system to analyze protein-protein interactions mediated by domains...
We have used the yeast two-hybrid system to analyze protein-protein interactions mediated by domains...
In this work we used the yeast two-hybrid (Y2H) system to deepen our understanding of protein-protei...
Mutations A49P and [Delta]47-53 at the T loop of the Escherichia coli GlnB (PII) protein impair regu...
Bacteria thrive in diverse environments. Their ability to adapt to drastically changing environmenta...
Two-component signal transduction systems enable bacteria to sense and respond to a wide range of en...
Two-component signal transduction involves phosphoryl transfer between a histidine kinase sensor and...
Two-component signal transduction involves phosphoryl transfer between a histidine kinase sensor and...
SummaryHistidine kinase receptors are a large family of membrane-spanning proteins found in many pro...
SummaryTwo-component signal transduction systems are the predominant means by which bacteria sense a...
Phosphoryl transfer from a histidine kinase to a response regulator in two-component signaling syste...
Using a yeast two-hybrid assay system, it was demonstrated that the four-helix bundle of the Rhodoba...
Nitrogen limitation in Escherichia coli activates about 100 genes. Their expression requires the res...
The signal-transducing kinase/phosphatase nitrogen regulator 1I (NR,J or NtrB) is required for the e...
AbstractHistidine kinases allow bacteria, plants, and fungi to sense and respond to their environmen...
We have used the yeast two-hybrid system to analyze protein-protein interactions mediated by domains...
We have used the yeast two-hybrid system to analyze protein-protein interactions mediated by domains...
In this work we used the yeast two-hybrid (Y2H) system to deepen our understanding of protein-protei...
Mutations A49P and [Delta]47-53 at the T loop of the Escherichia coli GlnB (PII) protein impair regu...
Bacteria thrive in diverse environments. Their ability to adapt to drastically changing environmenta...
Two-component signal transduction systems enable bacteria to sense and respond to a wide range of en...
Two-component signal transduction involves phosphoryl transfer between a histidine kinase sensor and...
Two-component signal transduction involves phosphoryl transfer between a histidine kinase sensor and...
SummaryHistidine kinase receptors are a large family of membrane-spanning proteins found in many pro...
SummaryTwo-component signal transduction systems are the predominant means by which bacteria sense a...
Phosphoryl transfer from a histidine kinase to a response regulator in two-component signaling syste...
Using a yeast two-hybrid assay system, it was demonstrated that the four-helix bundle of the Rhodoba...
Nitrogen limitation in Escherichia coli activates about 100 genes. Their expression requires the res...
The signal-transducing kinase/phosphatase nitrogen regulator 1I (NR,J or NtrB) is required for the e...
AbstractHistidine kinases allow bacteria, plants, and fungi to sense and respond to their environmen...