The bacterial flagellar motor (BFM) is responsible for driving bacterial locomotion and chemotaxis, fundamental processes in pathogenesis and biofilm formation. In the BFM, torque is generated at the interface between transmembrane proteins (stators) and a rotor. It is well established that the passage of ions down a transmembrane gradient through the stator complex provides the energy for torque generation. However, the physics involved in this energy conversion remain poorly understood. Here we propose a mechanically specific model for torque generation in the BFM. In particular, we identify roles for two fundamental forces involved in torque generation: electrostatic and steric. We propose that electrostatic forces serve to position the ...
The bacterialflagellar motor plays a crucial role in both bacterial locomotion and chemotaxis. Recen...
It has been known for some time that bacterial flagella are powered by remarkable rotary motors and...
AbstractThe rotation of a bacterial flagellar motor (BFM) is driven by multiple stators tethered to ...
The bacterial flagellar motor (BFM) is responsible for driving bacterial locomotion and chemotaxis, ...
The bacterial flagellar motor (BFM) is an ion-powered nanomachine that drives swimming in many bacte...
The bacterial flagellar motor is a powerful, ion-driven molecular motor. Situated in the cell wall o...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
A model is presented for the rotary motor that drives bacterial flagella, using the electrochemical ...
International audienceThe bacterial flagellar motor (BFM) is a rotary molecular motor embedded in th...
A model is presented for the rotary motor that drives bacterial flagella, using the electrochemical ...
The bacterial flagellar motor is driven by a flux of ions between the cytoplasm and the periplasmic ...
The bacterial flagellar motor is driven by a flux of ions between the cytoplasm and the periplasmic ...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
The bacterial flagellar motor is a rotary motor in the cell envelope of bacteria that couples ion fl...
The bacterial flagellar motor (BFM) is the rotary motor that rotates each bacterial flagellum, power...
The bacterialflagellar motor plays a crucial role in both bacterial locomotion and chemotaxis. Recen...
It has been known for some time that bacterial flagella are powered by remarkable rotary motors and...
AbstractThe rotation of a bacterial flagellar motor (BFM) is driven by multiple stators tethered to ...
The bacterial flagellar motor (BFM) is responsible for driving bacterial locomotion and chemotaxis, ...
The bacterial flagellar motor (BFM) is an ion-powered nanomachine that drives swimming in many bacte...
The bacterial flagellar motor is a powerful, ion-driven molecular motor. Situated in the cell wall o...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
A model is presented for the rotary motor that drives bacterial flagella, using the electrochemical ...
International audienceThe bacterial flagellar motor (BFM) is a rotary molecular motor embedded in th...
A model is presented for the rotary motor that drives bacterial flagella, using the electrochemical ...
The bacterial flagellar motor is driven by a flux of ions between the cytoplasm and the periplasmic ...
The bacterial flagellar motor is driven by a flux of ions between the cytoplasm and the periplasmic ...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
The bacterial flagellar motor is a rotary motor in the cell envelope of bacteria that couples ion fl...
The bacterial flagellar motor (BFM) is the rotary motor that rotates each bacterial flagellum, power...
The bacterialflagellar motor plays a crucial role in both bacterial locomotion and chemotaxis. Recen...
It has been known for some time that bacterial flagella are powered by remarkable rotary motors and...
AbstractThe rotation of a bacterial flagellar motor (BFM) is driven by multiple stators tethered to ...