The goal of understanding mechanisms of transmembrane signaling, one of many key life processes mediated by membrane proteins, has motivated numerous studies of bacterial chemotaxis receptors. Ligand binding to the receptor causes a piston motion of an α helix in the periplasmic and transmembrane domains, but it is unclear how the signal is then propagated through the cytoplasmic domain to control the activity of the associated kinase CheA. Recent proposals suggest that signaling in the cytoplasmic domain involves opposing changes in dynamics in different subdomains. However, it has been difficult to measure dynamics within the functional system, consisting of extended arrays of receptor complexes with two other proteins, CheA and CheW. We ...
Chemoreceptor dimers mediate bacterial chemotaxis through receptor arrays that form complexes with C...
Chemoreceptor dimers mediate bacterial chemotaxis through receptor arrays that form complexes with C...
ABSTRACT: A two-component signal transduction path-way underlies the phenomenon of bacterial chemota...
The transmembrane signaling mechanism of bacterial chemotaxis receptors is thought to involve change...
The transmembrane signaling mechanism of bacterial chemotaxis receptors is thought to involve change...
Chemotaxis is an ideal system for studying membrane protein signal transduction. Chemoreceptors are ...
Motile bacteria have a chemotaxis system that enables them to sense their environment and direct the...
Signal transduction in bacterial chemotaxis system is mediated by a family of transmembrane proteins...
Motile microorganisms navigate through their environment using special molecular machinery in order ...
Signal transduction in bacterial chemotaxis system is mediated by a family of transmembrane proteins...
Motile bacteria can track chemical gradients and adjust their swimming behavior using their chemotax...
Flagellated bacteria constantly and actively search for optimum niches for their survival and prolif...
Transmembrane chemoreceptors, also known as methyl-accepting chemotaxis proteins (MCPs), translate e...
Bacteria employ remarkable membrane-bound nanoarrays to sense their environment and direct their swi...
Chemoreceptor dimers mediate bacterial chemotaxis through receptor arrays that form complexes with C...
Chemoreceptor dimers mediate bacterial chemotaxis through receptor arrays that form complexes with C...
Chemoreceptor dimers mediate bacterial chemotaxis through receptor arrays that form complexes with C...
ABSTRACT: A two-component signal transduction path-way underlies the phenomenon of bacterial chemota...
The transmembrane signaling mechanism of bacterial chemotaxis receptors is thought to involve change...
The transmembrane signaling mechanism of bacterial chemotaxis receptors is thought to involve change...
Chemotaxis is an ideal system for studying membrane protein signal transduction. Chemoreceptors are ...
Motile bacteria have a chemotaxis system that enables them to sense their environment and direct the...
Signal transduction in bacterial chemotaxis system is mediated by a family of transmembrane proteins...
Motile microorganisms navigate through their environment using special molecular machinery in order ...
Signal transduction in bacterial chemotaxis system is mediated by a family of transmembrane proteins...
Motile bacteria can track chemical gradients and adjust their swimming behavior using their chemotax...
Flagellated bacteria constantly and actively search for optimum niches for their survival and prolif...
Transmembrane chemoreceptors, also known as methyl-accepting chemotaxis proteins (MCPs), translate e...
Bacteria employ remarkable membrane-bound nanoarrays to sense their environment and direct their swi...
Chemoreceptor dimers mediate bacterial chemotaxis through receptor arrays that form complexes with C...
Chemoreceptor dimers mediate bacterial chemotaxis through receptor arrays that form complexes with C...
Chemoreceptor dimers mediate bacterial chemotaxis through receptor arrays that form complexes with C...
ABSTRACT: A two-component signal transduction path-way underlies the phenomenon of bacterial chemota...