Vibrio cholerae is motile by means of its single polar flagellum which is driven by the sodium-motive force. In the motor driving rotation of the flagellar filament, a stator complex consisting of subunits PomA and PomB converts the electrochemical sodium ion gradient into torque. Charged or polar residues within the membrane part of PomB could act as ligands for Na+, or stabilize a hydrogen bond network by interacting with water within the putative channel between PomA and PomB. By analyzing a large data set of individual tracks of swimming cells, we show that S26 located within the transmembrane helix of PomB is required to promote very fast swimming of V. cholerae. Loss of hypermotility was observed with the S26T variant of PomB at pH 7....
Bacterial flagella are powered by a motor that converts a transmembrane electrochemical potential of...
ABSTRACT Many motile bacteria swim or swarm using a filamentous rotating organelle, the flagellum. F...
The sodium-driven motor consists of the products of at least four genes, pomA, pomB, motX, and motY,...
<div><p><i>Vibrio cholerae</i> is motile by means of its single polar flagellum which is driven by t...
Vibrio cholerae is motile by means of its single polar flagellum which is driven by the sodium-motiv...
Vibrio cholerae is motile by its polar flagellum, which is driven by a Na+-conducting motor. The sta...
AbstractThe flagellar motor consists of a rotor and a stator and couples the flux of cations (H+ or ...
The flagellar motor consists of a rotor and a stator and couples the flux of cations (H(+) or Na(+))...
PomA is thought to be a component of the ion channel in the sodium-driven polar-flagellar motor of V...
Abstract Bacteria swim using a flagellar motor that is powered by stator units. Vibrio spp. are high...
The bacterial flagellar motor is a tiny molecular machine that uses a trans-membrane flux of Hþ or N...
<p>A: The flagellum of <i>V</i>. <i>cholerae</i> consists of rotating and static parts. The filament...
driven polar flagella of Vibrio alginolyticus. Among these, PomA and PomB seem to be associated and ...
Bacteria are exposed to constantly changing environments. An efficient way to navigate towards favou...
The stator of the sodium-driven flagellar motor of Vibrio alginolyticus is a membrane protein comple...
Bacterial flagella are powered by a motor that converts a transmembrane electrochemical potential of...
ABSTRACT Many motile bacteria swim or swarm using a filamentous rotating organelle, the flagellum. F...
The sodium-driven motor consists of the products of at least four genes, pomA, pomB, motX, and motY,...
<div><p><i>Vibrio cholerae</i> is motile by means of its single polar flagellum which is driven by t...
Vibrio cholerae is motile by means of its single polar flagellum which is driven by the sodium-motiv...
Vibrio cholerae is motile by its polar flagellum, which is driven by a Na+-conducting motor. The sta...
AbstractThe flagellar motor consists of a rotor and a stator and couples the flux of cations (H+ or ...
The flagellar motor consists of a rotor and a stator and couples the flux of cations (H(+) or Na(+))...
PomA is thought to be a component of the ion channel in the sodium-driven polar-flagellar motor of V...
Abstract Bacteria swim using a flagellar motor that is powered by stator units. Vibrio spp. are high...
The bacterial flagellar motor is a tiny molecular machine that uses a trans-membrane flux of Hþ or N...
<p>A: The flagellum of <i>V</i>. <i>cholerae</i> consists of rotating and static parts. The filament...
driven polar flagella of Vibrio alginolyticus. Among these, PomA and PomB seem to be associated and ...
Bacteria are exposed to constantly changing environments. An efficient way to navigate towards favou...
The stator of the sodium-driven flagellar motor of Vibrio alginolyticus is a membrane protein comple...
Bacterial flagella are powered by a motor that converts a transmembrane electrochemical potential of...
ABSTRACT Many motile bacteria swim or swarm using a filamentous rotating organelle, the flagellum. F...
The sodium-driven motor consists of the products of at least four genes, pomA, pomB, motX, and motY,...