Torque is generated in the rotary motor at the base of the bacterial flagellum by ion translocating stator units anchored to the peptidoglycan cell wall. Stator units are composed of the proteins MotA and MotB in proton-driven motors, and they are composed of PomA and PomB in sodium-driven motors. Strains of Escherichia coli lacking functional stator proteins produce flagella that do not rotate, and induced expression of the missing proteins leads to restoration of motor rotation in discrete speed increments, a process known as “resurrection.” Early work suggested a maximum of eight units. More recent indications that WT motors may contain more than eight units, based on recovery of disrupted motors, are inconclusive. Here we demonstrate co...
The bacterial flagellar motor is one of the few rotary motors in nature. Only ∼50 nm in diameter, th...
Recent experiments on the bacterial flagellar motor have shown that the structure of this nanomachin...
The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-d...
Torque is generated in the rotary motor at the base of the bacterial flagellum by ion translocating ...
Torque is generated in the rotary motor at the base of the bacterial flagellum by ion translocating ...
The bacterial flagellar motor is a powerful, ion-driven molecular motor. Situated in the cell wall o...
The bacterial flagellar motor is a rotary motor in the cell envelope of bacteria that couples ion fl...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
We used the technique of electrorotation to apply steadily increasing external torque to tethered ce...
The bacterial flagellar motor (BFM) rotates hundreds of times per second to propel bacteria, driven ...
The bacterial flagellar motor (BFM) rotates hundreds of times per second to propel bacteria driven b...
Although it is known that diverse bacterial flagellar motors produce different torques, the mechanis...
The bacterial flagellar motor (BFM) is an ion-powered nanomachine that drives swimming in many bacte...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
The bacterial flagellar motor consists of a rotor and ~10 stator complexes, MotA/MotB. Its rotationa...
The bacterial flagellar motor is one of the few rotary motors in nature. Only ∼50 nm in diameter, th...
Recent experiments on the bacterial flagellar motor have shown that the structure of this nanomachin...
The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-d...
Torque is generated in the rotary motor at the base of the bacterial flagellum by ion translocating ...
Torque is generated in the rotary motor at the base of the bacterial flagellum by ion translocating ...
The bacterial flagellar motor is a powerful, ion-driven molecular motor. Situated in the cell wall o...
The bacterial flagellar motor is a rotary motor in the cell envelope of bacteria that couples ion fl...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
We used the technique of electrorotation to apply steadily increasing external torque to tethered ce...
The bacterial flagellar motor (BFM) rotates hundreds of times per second to propel bacteria, driven ...
The bacterial flagellar motor (BFM) rotates hundreds of times per second to propel bacteria driven b...
Although it is known that diverse bacterial flagellar motors produce different torques, the mechanis...
The bacterial flagellar motor (BFM) is an ion-powered nanomachine that drives swimming in many bacte...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
The bacterial flagellar motor consists of a rotor and ~10 stator complexes, MotA/MotB. Its rotationa...
The bacterial flagellar motor is one of the few rotary motors in nature. Only ∼50 nm in diameter, th...
Recent experiments on the bacterial flagellar motor have shown that the structure of this nanomachin...
The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-d...