AbstractA general “multi-stage” regulation model, based on linearly connected regulatory units, is formulated to demonstrate how biochemical pathways may achieve high levels of accuracy. The general mechanism, which is robust to changes in biochemical parameters, such as protein concentration and kinetic rate constants, is incorporated into a mathematical model of the bacterial chemotaxis network and provides a new framework for explaining regulation and adaptiveness in this extensively studied system. Although conventional theories suggest that methylation feedback pathways are responsible for chemotactic regulation, the model, which is deduced from known experimental data, indicates that protein interactions downstream of the bacterial re...
Biological systems are exposed to various perturbations that affect performance of the cellular netw...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
AbstractChemotaxis is the process, by which cells sense changes in their chemical environment and mo...
AbstractA general “multi-stage” regulation model, based on linearly connected regulatory units, is f...
ABSTRACT A general “multi-stage ” regulation model, based on linearly connected regulatory units, is...
ABSTRACTThe signaling apparatus mediating bacterial chemotaxis can adapt to a wide range of persiste...
Bacterial chemotaxis is a useful model for investigating in molecular detail the behavioral response...
AbstractThe crystal structures of two key regulators of the bacterial chemotaxis pathway (CheR and C...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
SummaryBackgroundChemotaxis is the process by which organisms migrate toward nutrients and favorable...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
AbstractComplex networks of interacting molecular components of living cells are responsible for man...
PMCID: PMC3088647This is an open-access article distributed under the terms of the Creative Commons ...
Integral feedback control is a basic engineering strategy for ensuring that the output of a system r...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
Biological systems are exposed to various perturbations that affect performance of the cellular netw...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
AbstractChemotaxis is the process, by which cells sense changes in their chemical environment and mo...
AbstractA general “multi-stage” regulation model, based on linearly connected regulatory units, is f...
ABSTRACT A general “multi-stage ” regulation model, based on linearly connected regulatory units, is...
ABSTRACTThe signaling apparatus mediating bacterial chemotaxis can adapt to a wide range of persiste...
Bacterial chemotaxis is a useful model for investigating in molecular detail the behavioral response...
AbstractThe crystal structures of two key regulators of the bacterial chemotaxis pathway (CheR and C...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
SummaryBackgroundChemotaxis is the process by which organisms migrate toward nutrients and favorable...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
AbstractComplex networks of interacting molecular components of living cells are responsible for man...
PMCID: PMC3088647This is an open-access article distributed under the terms of the Creative Commons ...
Integral feedback control is a basic engineering strategy for ensuring that the output of a system r...
Bacteria move towards favourable and away from toxic environments by changing their swimming pattern...
Biological systems are exposed to various perturbations that affect performance of the cellular netw...
Bacteria are capable of sensing and responding to changes in their environment. One of the ways they...
AbstractChemotaxis is the process, by which cells sense changes in their chemical environment and mo...