Nonequivalence of membrane voltage and ion-gradient as driving forces for the bacterial flagellar motor at low load.
Many bacterial species swim using flagella. The flagellar motor couples ion flow across the cytoplasmic membrane to rotation. Ion flow is driven by both a membrane potential (V(m)) and a transmembrane concentration gradient. To investigate their relation to bacterial flagellar motor function we deve...
Hlavní autoři: | Lo, C, Leake, M, Pilizota, T, Berry, R |
---|---|
Médium: | Journal article |
Jazyk: | English |
Vydáno: |
2007
|
Podobné jednotky
-
Mechanism and kinetics of a sodium-driven bacterial flagellar motor
Autor: Lo, C, a další
Vydáno: (2013) -
Temperature dependences of torque generation and membrane voltage in the bacterial flagellar motor
Autor: Inoue, Y, a další
Vydáno: (2013) -
The bacterial flagellar motor
Autor: Berry, R
Vydáno: (2004) -
A molecular brake, not a clutch, stops the Rhodobacter sphaeroides flagellar motor
Autor: Pilizota, T, a další
Vydáno: (2009) -
A molecular brake, not a clutch, stops the Rhodobacter sphaeroides flagellar motor.
Autor: Pilizota, T, a další
Vydáno: (2009)