AbstractAdaptation of the attractant response in Escherichia coli is attributable to the methylation of its transmembrane chemotactic receptors by the methyltransferase CheR. This protein contains two binding domains, one for the sites of methylation themselves and the other for a flexible tether at the C terminus of the receptor. We have explored the theoretical consequences of this binding geometry for a CheR molecule associated with a cluster of chemotactic receptors. Calculations show that the CheR molecule will bind with high net affinity to the receptor lattice, having a high probability of being attached by one or both of its domains at any instant of time. Because of the relatively low affinity of its individual domains and the clos...
Chemotaxis signalling complexes of Escherichia coli , composed of chemoreceptors, CheA and CheW, for...
Summary: Bacteria perform chemotactic adaptation by sequential modification of multiple modifiable s...
AbstractReceptor coupling is believed to explain the high sensitivity of the Escherichia coli chemot...
AbstractAdaptation of the attractant response in Escherichia coli is attributable to the methylation...
ABSTRACT Adaptation of the attractant response in Escherichia coli is attributable to the methylatio...
AbstractSignaling in bacterial chemotaxis is mediated by several types of transmembrane chemorecepto...
The chemosensory complexes in Escherichia coli are localized predominantly in clusters at one or bot...
The chemosensory complexes in Escherichia coli are localized predominantly in clusters at one or bot...
AbstractBackground: Flagellated bacteria swim towards favorable chemicals and away from deleterious ...
Adaptation in the chemosensory pathways of bacteria like Escherichia coli is mediated by methylation...
Adaptation in the chemosensory pathways of bacteria like Escherichia coli is mediated by methylation...
<div><p>In many sensory systems, transmembrane receptors are spatially organized in large clusters. ...
AbstractThe crystal structures of two key regulators of the bacterial chemotaxis pathway (CheR and C...
In many sensory systems, transmembrane receptors are spatially organized in large clusters. Such arr...
A sensory adaptation system that tunes chemoreceptor sensitivity enables motile Escherichia coli cel...
Chemotaxis signalling complexes of Escherichia coli , composed of chemoreceptors, CheA and CheW, for...
Summary: Bacteria perform chemotactic adaptation by sequential modification of multiple modifiable s...
AbstractReceptor coupling is believed to explain the high sensitivity of the Escherichia coli chemot...
AbstractAdaptation of the attractant response in Escherichia coli is attributable to the methylation...
ABSTRACT Adaptation of the attractant response in Escherichia coli is attributable to the methylatio...
AbstractSignaling in bacterial chemotaxis is mediated by several types of transmembrane chemorecepto...
The chemosensory complexes in Escherichia coli are localized predominantly in clusters at one or bot...
The chemosensory complexes in Escherichia coli are localized predominantly in clusters at one or bot...
AbstractBackground: Flagellated bacteria swim towards favorable chemicals and away from deleterious ...
Adaptation in the chemosensory pathways of bacteria like Escherichia coli is mediated by methylation...
Adaptation in the chemosensory pathways of bacteria like Escherichia coli is mediated by methylation...
<div><p>In many sensory systems, transmembrane receptors are spatially organized in large clusters. ...
AbstractThe crystal structures of two key regulators of the bacterial chemotaxis pathway (CheR and C...
In many sensory systems, transmembrane receptors are spatially organized in large clusters. Such arr...
A sensory adaptation system that tunes chemoreceptor sensitivity enables motile Escherichia coli cel...
Chemotaxis signalling complexes of Escherichia coli , composed of chemoreceptors, CheA and CheW, for...
Summary: Bacteria perform chemotactic adaptation by sequential modification of multiple modifiable s...
AbstractReceptor coupling is believed to explain the high sensitivity of the Escherichia coli chemot...