International audienceUnderstanding the principles underlying the plasticity of signal transduction networks is fundamental to decipher the functioning of living cells. In Myxococcus xanthus, a particular chemosensory system (Frz) coordinates the activity of two separate motility systems (the A-and S-motility systems), promoting multicellular development. This unusual structure asks how signal is transduced in a branched signal transduction pathway. Using combined evolution-guided and single cell approaches, we successfully uncoupled the regulations and showed that the A-motility regulation system branched-off an existing signaling system that initially only controlled S-motility. Pathway branching emerged in part following a gene duplicati...
Cellular biochemical networks have to function in a noisy environment using imperfect components. In...
Two-component signal transduction systems enable bacteria to sense and respond to a wide range of en...
AbstractEvolution has provided many organisms with sophisticated sensory systems that enable them to...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
<div><p>Understanding the principles underlying the plasticity of signal transduction networks is fu...
Understanding the principles underlying the plasticity of signal transduction networks is fun-dament...
Eukaryotic chemotactic signaling networks which regulate the cell’s ability to sense the gradient of...
AbstractMajor areas covered at the Bacterial Locomotion and Signal Transduction (BLAST) meeting incl...
Two-component signal transduction systems, comprised of histidine kinases and their response regulat...
Chemotaxis is a fundamental cellular process by which cells sense and navigate in their environment...
Cells have developed networks of interacting proteins to process information about their environment...
Cells have developed networks of interacting proteins to process information about their environment...
SummaryTwo-component signal transduction systems are the predominant means by which bacteria sense a...
Cellular biochemical networks have to function in a noisy environment using imperfect components. In...
Two-component signal transduction systems enable bacteria to sense and respond to a wide range of en...
AbstractEvolution has provided many organisms with sophisticated sensory systems that enable them to...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
<div><p>Understanding the principles underlying the plasticity of signal transduction networks is fu...
Understanding the principles underlying the plasticity of signal transduction networks is fun-dament...
Eukaryotic chemotactic signaling networks which regulate the cell’s ability to sense the gradient of...
AbstractMajor areas covered at the Bacterial Locomotion and Signal Transduction (BLAST) meeting incl...
Two-component signal transduction systems, comprised of histidine kinases and their response regulat...
Chemotaxis is a fundamental cellular process by which cells sense and navigate in their environment...
Cells have developed networks of interacting proteins to process information about their environment...
Cells have developed networks of interacting proteins to process information about their environment...
SummaryTwo-component signal transduction systems are the predominant means by which bacteria sense a...
Cellular biochemical networks have to function in a noisy environment using imperfect components. In...
Two-component signal transduction systems enable bacteria to sense and respond to a wide range of en...
AbstractEvolution has provided many organisms with sophisticated sensory systems that enable them to...