The bacterial flagellar motor (BFM) rotates hundreds of times per second to propel bacteria, driven by an electrochemical ion gradient. The motor consists of a rotor 50 nm in diameter surrounded by up to 11 ion-conducting stator units which exchange between motors and a membrane-bound pool. Measurements of the torque-speed relationship guide the development of models of the motor mechanism. In contrast to previous reports that speed near zero torque is independent of the number of stator units, we observe multiple speeds that we attribute to different numbers of units near zero torque in both Na+ and H+-driven motors. We measure the full torque-speed relationship of one and two H+ units in Escherichia coli by selecting the number of H+ unit...
The bacterial flagellar motor is a rotary molecular machine that rotates the helical filaments that ...
International audienceThe bacterial flagellar motor (BFM) is a rotary molecular motor embedded in th...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
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...
The bacterial flagellar motor is a rotary motor in the cell envelope of bacteria that couples ion fl...
The bacterial flagellar motor is a large rotary molecular machine that propels swimming bacteria, po...
Recent experiments on the bacterial flagellar motor have shown that the structure of this nanomachin...
A bacterial ftagellum is driven by a reversible rotary motor. The power input is determined by proto...
Many swimming bacteria are propelled by flagellar filaments driven by a rotary motor. Each of these ...
The bacterial flagellar motor rotates driven by an electrochemical ion gradient across the cytoplasm...
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...
Bacterial flagella are driven by a rotary motor that is energized by an electrochemical ion gradient...
Torque is generated in the rotary motor at the base of the bacterial flagellum by ion translocating ...
The bacterial flagellar motor is a rotary molecular machine that rotates the helical filaments that ...
International audienceThe bacterial flagellar motor (BFM) is a rotary molecular motor embedded in th...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
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...
The bacterial flagellar motor is a rotary motor in the cell envelope of bacteria that couples ion fl...
The bacterial flagellar motor is a large rotary molecular machine that propels swimming bacteria, po...
Recent experiments on the bacterial flagellar motor have shown that the structure of this nanomachin...
A bacterial ftagellum is driven by a reversible rotary motor. The power input is determined by proto...
Many swimming bacteria are propelled by flagellar filaments driven by a rotary motor. Each of these ...
The bacterial flagellar motor rotates driven by an electrochemical ion gradient across the cytoplasm...
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...
Bacterial flagella are driven by a rotary motor that is energized by an electrochemical ion gradient...
Torque is generated in the rotary motor at the base of the bacterial flagellum by ion translocating ...
The bacterial flagellar motor is a rotary molecular machine that rotates the helical filaments that ...
International audienceThe bacterial flagellar motor (BFM) is a rotary molecular motor embedded in th...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...