The bacterial flagellar motor is the most complex structure in the bacterial cell, driving the ion-driven rotation of the helical flagellum. The ordered expression of the regulon and the assembly of the series of interacting protein rings, spanning the inner and outer membranes to form the ∼45–50-nm protein complex, have made investigation of the structure and mechanism a major challenge since its recognition as a rotating nanomachine about 40 years ago. Painstaking molecular genetics, biochemistry, and electron microscopy revealed a tiny electric motor spinning in the bacterial membrane. Over the last decade, new single-molecule and in vivo biophysical methods have allowed investigation of the stability of this and other large protein comp...
The proteins that make up the bacterial flagellar rotary motor have recently been shown to be more d...
Many cellular activities are driven by complex protein machines. By measuring the behaviour of fluor...
International audienceThe bacterial flagellar motor (BFM) is a rotary molecular motor embedded in th...
The bacterial flagellar motor is one of the few rotary motors in nature. Only ∼50 nm in diameter, th...
The bacterial flagellar motor is one of the few rotary motors in nature. Only ∼50 nm in diameter, th...
The bacterial flagellum is probably the most complex organelle found in bacteria. Although the ribos...
The bacterial flagellar motor (BFM) is an ion-powered nanomachine that drives swimming in many bacte...
It has been known for some time that bacterial flagella are powered by remarkable rotary motors and...
The bacterial flagellar motor (BFM) is an ion-powered nanomachine that drives swimming in many bacte...
The bacterial flagellum is a locomotive organelle that propels the bacterial cell body in liquid env...
The bacterial flagellum is a locomotive organelle that propels the bacterial cell body in liquid env...
AbstractThe bacterial flagellar motor couples ion flow to rotary motion at high speed and with appar...
The evolution of molecular machines is fundamental to the development of pathogenesis in bacteria. T...
The bacterial flagellum is one of nature’s most amazing and well-studied nanomachines. Its cell-wall...
The bacterial flagellum is the prototypical protein nanomachine and comprises a rotating helical pro...
The proteins that make up the bacterial flagellar rotary motor have recently been shown to be more d...
Many cellular activities are driven by complex protein machines. By measuring the behaviour of fluor...
International audienceThe bacterial flagellar motor (BFM) is a rotary molecular motor embedded in th...
The bacterial flagellar motor is one of the few rotary motors in nature. Only ∼50 nm in diameter, th...
The bacterial flagellar motor is one of the few rotary motors in nature. Only ∼50 nm in diameter, th...
The bacterial flagellum is probably the most complex organelle found in bacteria. Although the ribos...
The bacterial flagellar motor (BFM) is an ion-powered nanomachine that drives swimming in many bacte...
It has been known for some time that bacterial flagella are powered by remarkable rotary motors and...
The bacterial flagellar motor (BFM) is an ion-powered nanomachine that drives swimming in many bacte...
The bacterial flagellum is a locomotive organelle that propels the bacterial cell body in liquid env...
The bacterial flagellum is a locomotive organelle that propels the bacterial cell body in liquid env...
AbstractThe bacterial flagellar motor couples ion flow to rotary motion at high speed and with appar...
The evolution of molecular machines is fundamental to the development of pathogenesis in bacteria. T...
The bacterial flagellum is one of nature’s most amazing and well-studied nanomachines. Its cell-wall...
The bacterial flagellum is the prototypical protein nanomachine and comprises a rotating helical pro...
The proteins that make up the bacterial flagellar rotary motor have recently been shown to be more d...
Many cellular activities are driven by complex protein machines. By measuring the behaviour of fluor...
International audienceThe bacterial flagellar motor (BFM) is a rotary molecular motor embedded in th...