The bacterial flagellar motor is a highly efficient rotary machine used by many bacteria to propel themselves. It has recently been shown that at low speeds its rotation proceeds in steps. Here we propose a simple physical model, based on the storage of energy in protein springs, that accounts for this stepping behavior as a random walk in a tilted corrugated potential that combines torque and contact forces. We argue that the absolute angular position of the rotor is crucial for understanding step properties and show this hypothesis to be consistent with the available data, in particular the observation that backward steps are smaller on average than forward steps. We also predict a sublinear speed versus torque relationship for fixed load...
A bacterial ftagellum is driven by a reversible rotary motor. The power input is determined by proto...
The bacterial flagellar motor is driven by a flux of ions between the cytoplasm and the periplasmic ...
Rotary molecular motors are protein complexes which convert chemical or electrochemical energy from ...
AbstractThe bacterial flagellar motor is a rotary molecular machine that rotates the helical filamen...
The bacterial flagellar motor is a rotary molecular machine that rotates the helical filaments that ...
AbstractThe rotation of a bacterial flagellar motor (BFM) is driven by multiple stators tethered to ...
The bacterial flagellar motor is a molecular engine that couples the flow of protons across the cyto...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
The bacterial flagellar motor is a rotary molecular machine that rotates the helical filaments that ...
The bacterial flagellar motor (BFM) is an ion-powered nanomachine that drives swimming in many bacte...
The bacterial flagellar motor is driven by a flux of ions between the cytoplasm and the periplasmic ...
The bacterial flagellar motor (BFM) is responsible for driving bacterial locomotion and chemotaxis, ...
It has been known for some time that bacterial flagella are powered by remarkable rotary motors and...
Biological molecular motors show us how directed motion can be generated by nanometre-scale devices ...
A bacterial ftagellum is driven by a reversible rotary motor. The power input is determined by proto...
The bacterial flagellar motor is driven by a flux of ions between the cytoplasm and the periplasmic ...
Rotary molecular motors are protein complexes which convert chemical or electrochemical energy from ...
AbstractThe bacterial flagellar motor is a rotary molecular machine that rotates the helical filamen...
The bacterial flagellar motor is a rotary molecular machine that rotates the helical filaments that ...
AbstractThe rotation of a bacterial flagellar motor (BFM) is driven by multiple stators tethered to ...
The bacterial flagellar motor is a molecular engine that couples the flow of protons across the cyto...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
The bacterial flagellar motor is a rotary molecular machine that rotates the helical filaments that ...
The bacterial flagellar motor (BFM) is an ion-powered nanomachine that drives swimming in many bacte...
The bacterial flagellar motor is driven by a flux of ions between the cytoplasm and the periplasmic ...
The bacterial flagellar motor (BFM) is responsible for driving bacterial locomotion and chemotaxis, ...
It has been known for some time that bacterial flagella are powered by remarkable rotary motors and...
Biological molecular motors show us how directed motion can be generated by nanometre-scale devices ...
A bacterial ftagellum is driven by a reversible rotary motor. The power input is determined by proto...
The bacterial flagellar motor is driven by a flux of ions between the cytoplasm and the periplasmic ...
Rotary molecular motors are protein complexes which convert chemical or electrochemical energy from ...