Most biological processes are performed by multiprotein complexes. Traditionally described as static entities, evidence is now emerging that their components can be highly dynamic, exchanging constantly with cellular pools. The bacterial flagellar motor contains approximately 13 different proteins and provides an ideal system to study functional molecular complexes. It is powered by transmembrane ion flux through a ring of stator complexes that push on a central rotor. The Escherichia coli motor switches direction stochastically in response to binding of the response regulator CheY to the rotor switch component FliM. Much is known of the static motor structure, but we are just beginning to understand the dynamics of its individual component...
AbstractThe dynamic switching of the bacterial flagellar motor regulates cell motility in bacterial ...
The dynamic switching of the bacterial flagellar motor regulates cell motility in bacterial chemotax...
The proteins that make up the bacterial flagellar rotary motor have recently been shown to be more d...
Most biological processes are performed by multiprotein complexes. Traditionally described as static...
ABSTRACT Some proteins in biological complexes exchange with pools of free proteins while the comple...
ABSTRACT Some proteins in biological complexes exchange with pools of free proteins while the comple...
Many bacteria use flagella operated by rotary motors to swim. These complex structures contain more ...
Bacterial flagellar motor is a highly ordered and complex supramolecular structure that powers rotat...
The bacterial flagellar motor is an ultrasensitive motor. Its output, the probability of the motor t...
The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-d...
ABSTRACT In Escherichia coli, the chemotaxis response regulator CheY-P binds to FliM, a component of...
Many bacteria use flagella operated by rotary motors to swim. These complex structures contain more ...
The bacterial flagellar motor is one of the few rotary motors in nature. Only ∼50 nm in diameter, th...
The bacterial flagellar motor is one of the few rotary motors in nature. Only ∼50 nm in diameter, th...
Bacteria swim through liquid media propelled by rotating flagella, driven by a highly complex motor ...
AbstractThe dynamic switching of the bacterial flagellar motor regulates cell motility in bacterial ...
The dynamic switching of the bacterial flagellar motor regulates cell motility in bacterial chemotax...
The proteins that make up the bacterial flagellar rotary motor have recently been shown to be more d...
Most biological processes are performed by multiprotein complexes. Traditionally described as static...
ABSTRACT Some proteins in biological complexes exchange with pools of free proteins while the comple...
ABSTRACT Some proteins in biological complexes exchange with pools of free proteins while the comple...
Many bacteria use flagella operated by rotary motors to swim. These complex structures contain more ...
Bacterial flagellar motor is a highly ordered and complex supramolecular structure that powers rotat...
The bacterial flagellar motor is an ultrasensitive motor. Its output, the probability of the motor t...
The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-d...
ABSTRACT In Escherichia coli, the chemotaxis response regulator CheY-P binds to FliM, a component of...
Many bacteria use flagella operated by rotary motors to swim. These complex structures contain more ...
The bacterial flagellar motor is one of the few rotary motors in nature. Only ∼50 nm in diameter, th...
The bacterial flagellar motor is one of the few rotary motors in nature. Only ∼50 nm in diameter, th...
Bacteria swim through liquid media propelled by rotating flagella, driven by a highly complex motor ...
AbstractThe dynamic switching of the bacterial flagellar motor regulates cell motility in bacterial ...
The dynamic switching of the bacterial flagellar motor regulates cell motility in bacterial chemotax...
The proteins that make up the bacterial flagellar rotary motor have recently been shown to be more d...