Bacterial chemotaxis represents one of the simplest and best studied examples of unicellular behavior. Chemotaxis allows swimming bacterial cells to follow chemical gradients in the environment by performing temporal comparisons of ligand concentrations. The process of chemotaxis in the model bacterium Escherichia coli has been studied in great molecular detail over the past 40 years, using a large range of experimental tools to investigate physiology, genetics and biochemistry of the system. The abundance of quantitative experimental data enabled detailed computational modeling of the pathway and theoretical analyses of such properties as robustness and signal amplification. Because of the temporal mode of gradient sensing in bacterial che...
AbstractComplex networks of interacting molecular components of living cells are responsible for man...
Simulation of cellular behavior on multiple scales requires models that are sufficiently detailed to...
Living cells sense and respond to constantly changing environmental conditions. Depending on the ty...
Chemotaxis allows flagellated bacteria to navigate in complex chemical environments, following nutri...
SummaryBackgroundChemotaxis is the process by which organisms migrate toward nutrients and favorable...
Living cells sense and respond to constantly changing environmental conditions. Depending on the ty...
Motile bacteria use chemotaxis to migrate towards environments that are favorable for growth and sur...
<div><p>Navigation of cells to the optimal environmental condition is critical for their survival an...
The chemotaxis pathway of Escherichia coli is the most studied sensory system in prokaryotes. The hi...
<div><p>Navigation of cells to the optimal environmental condition is critical for their survival an...
The response of microbes to external signals is mediated by biochemical networks with intrinsic time...
Navigation of cells to the optimal environmental condition is critical for their survival and growth...
Background The ability to predict the function and structure of complex molecular mechanisms unde...
SummaryBackgroundChemotaxis is the process by which organisms migrate toward nutrients and favorable...
International audienceEvolution of biological sensory systems is driven by the need for efficient re...
AbstractComplex networks of interacting molecular components of living cells are responsible for man...
Simulation of cellular behavior on multiple scales requires models that are sufficiently detailed to...
Living cells sense and respond to constantly changing environmental conditions. Depending on the ty...
Chemotaxis allows flagellated bacteria to navigate in complex chemical environments, following nutri...
SummaryBackgroundChemotaxis is the process by which organisms migrate toward nutrients and favorable...
Living cells sense and respond to constantly changing environmental conditions. Depending on the ty...
Motile bacteria use chemotaxis to migrate towards environments that are favorable for growth and sur...
<div><p>Navigation of cells to the optimal environmental condition is critical for their survival an...
The chemotaxis pathway of Escherichia coli is the most studied sensory system in prokaryotes. The hi...
<div><p>Navigation of cells to the optimal environmental condition is critical for their survival an...
The response of microbes to external signals is mediated by biochemical networks with intrinsic time...
Navigation of cells to the optimal environmental condition is critical for their survival and growth...
Background The ability to predict the function and structure of complex molecular mechanisms unde...
SummaryBackgroundChemotaxis is the process by which organisms migrate toward nutrients and favorable...
International audienceEvolution of biological sensory systems is driven by the need for efficient re...
AbstractComplex networks of interacting molecular components of living cells are responsible for man...
Simulation of cellular behavior on multiple scales requires models that are sufficiently detailed to...
Living cells sense and respond to constantly changing environmental conditions. Depending on the ty...