Although it is known that diverse bacterial flagellar motors produce different torques, the mechanism underlying torque variation is unknown. To understand this difference better, we combined genetic analyses with electron cryo-tomography subtomogram averaging to determine in situ structures of flagellar motors that produce different torques, from Campylobacter and Vibrio species. For the first time, to our knowledge, our results unambiguously locate the torque-generating stator complexes and show that diverse high-torque motors use variants of an ancestrally related family of structures to scaffold incorporation of additional stator complexes at wider radii from the axial driveshaft than in the model enteric motor. We identify the protein ...
The bacterial flagellar motor (BFM) is responsible for driving bacterial locomotion and chemotaxis, ...
The bacterial flagellar motor (BFM) is responsible for driving bacterial locomotion and chemotaxis, ...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
Although it is known that diverse bacterial flagellar motors produce different torques, the mechanis...
Although it is known that diverse bacterial flagellar motors produce different torques, the mechanis...
Understanding the evolution of molecular machines underpins our understanding of the development of ...
The bacterial flagellar motor, a cell-envelope-embedded macromolecular machine that functions as a c...
The bacterial flagellar motor, a cell-envelope-embedded macromolecular machine that functions as a c...
The bacterial flagellum is one of nature’s most amazing and well-studied nanomachines. Its cell-wall...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
The bacterial flagellum is the prototypical protein nanomachine and comprises a rotating helical pro...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
The bacterial flagellum is a reversible rotating motor powered by ion transport through stator units...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
The bacterial flagellar motor (BFM) is responsible for driving bacterial locomotion and chemotaxis, ...
The bacterial flagellar motor (BFM) is responsible for driving bacterial locomotion and chemotaxis, ...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
Although it is known that diverse bacterial flagellar motors produce different torques, the mechanis...
Although it is known that diverse bacterial flagellar motors produce different torques, the mechanis...
Understanding the evolution of molecular machines underpins our understanding of the development of ...
The bacterial flagellar motor, a cell-envelope-embedded macromolecular machine that functions as a c...
The bacterial flagellar motor, a cell-envelope-embedded macromolecular machine that functions as a c...
The bacterial flagellum is one of nature’s most amazing and well-studied nanomachines. Its cell-wall...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
It is becoming clear that the bacterial flagellar motor output is important not only for bacterial l...
The bacterial flagellum is the prototypical protein nanomachine and comprises a rotating helical pro...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
The bacterial flagellum is a reversible rotating motor powered by ion transport through stator units...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...
The bacterial flagellar motor (BFM) is responsible for driving bacterial locomotion and chemotaxis, ...
The bacterial flagellar motor (BFM) is responsible for driving bacterial locomotion and chemotaxis, ...
ABSTRACT It is becoming clear that the bacterial flagellar motor output is important not only for ba...