Understanding how multiple signals are integrated in living cells to produce a balanced response is a major challenge in biology. Two-component signal transduction pathways, such as bacterial chemotaxis, comprise histidine protein kinases (HPKs) and response regulators (RRs). These are used to sense and respond to changes in the environment. Rhodobacter sphaeroides has a complex chemosensory network with two signaling clusters, each containing a HPK, CheA. Here we demonstrate, using a mathematical model, how the outputs of the two signaling clusters may be integrated. We use our mathematical model supported by experimental data to predict that: (1) the main RR controlling flagellar rotation, CheY6, aided by its specific phosphatase, the bif...
addresses: Oxford Centre for Integrative Systems Biology, University of Oxford, Oxford, UK.types: Jo...
Signal transduction in Escherichia coli involves the interaction of transmembrane receptor proteins ...
AbstractMajor areas covered at the Bacterial Locomotion and Signal Transduction (BLAST) meeting incl...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
addresses: Centre for Mathematical Biology, Mathematical Institute, University of Oxford, Oxford, Un...
addresses: Oxford Centre for Integrative Systems Biology and Department of Biochemistry, University ...
Phosphorylation-based signaling pathways employ dephosphorylation mechanisms for signal termination....
Perceiving and responding to the environment is key to survival. Using the prokaryotic equivalent of...
Chemotaxis is one of many two-component signal transduction (TCST) systems found in cells. B. subti...
ABSTRACT Complex chemosensory systems control multiple biological functions in bacteria, such as che...
ABSTRACT: A two-component signal transduction path-way underlies the phenomenon of bacterial chemota...
The two-component sensing system controlling bacterial chemotaxis is one of the best studied in biol...
addresses: Oxford Centre for Integrative Systems Biology, University of Oxford, Oxford, UK.types: Jo...
Signal transduction in Escherichia coli involves the interaction of transmembrane receptor proteins ...
AbstractMajor areas covered at the Bacterial Locomotion and Signal Transduction (BLAST) meeting incl...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
addresses: Centre for Mathematical Biology, Mathematical Institute, University of Oxford, Oxford, Un...
addresses: Oxford Centre for Integrative Systems Biology and Department of Biochemistry, University ...
Phosphorylation-based signaling pathways employ dephosphorylation mechanisms for signal termination....
Perceiving and responding to the environment is key to survival. Using the prokaryotic equivalent of...
Chemotaxis is one of many two-component signal transduction (TCST) systems found in cells. B. subti...
ABSTRACT Complex chemosensory systems control multiple biological functions in bacteria, such as che...
ABSTRACT: A two-component signal transduction path-way underlies the phenomenon of bacterial chemota...
The two-component sensing system controlling bacterial chemotaxis is one of the best studied in biol...
addresses: Oxford Centre for Integrative Systems Biology, University of Oxford, Oxford, UK.types: Jo...
Signal transduction in Escherichia coli involves the interaction of transmembrane receptor proteins ...
AbstractMajor areas covered at the Bacterial Locomotion and Signal Transduction (BLAST) meeting incl...