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91探花
Port Meadow flooded, February 2021

Professor Richard Berry D. Phil.

Professor of Biological Physics

Research theme

  • Biological physics

Sub department

  • Condensed Matter Physics

Research groups

  • 91探花 Molecular Motors
Richard.Berry@physics.ox.ac.uk
Telephone: 01865 (2)72288,01865 (2)71723
Clarendon Laboratory, room 273B
  • About
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  • Publications

Torque and switching in the bacterial flagellar motor. An electrostatic model.

Biophys J 64:4 (1993) 961-973

Abstract:

A model is presented for the rotary motor that drives bacterial flagella, using the electrochemical gradient of protons across the cytoplasmic membrane. The model unifies several concepts present in previous models. Torque is generated by proton-conducting particles around the perimeter of the rotor at the base of the flagellum. Protons in channels formed by these particles interact electrostatically with tilted lines of charges on the rotor, providing "loose coupling" between proton flux and rotation of the flagellum. Computer simulations of the model correctly predict the experimentally observed dynamic properties of the motor. Unlike previous models, the motor presented here may rotate either way for a given direction of the protonmotive force. The direction of rotation only depends on the level of occupancy of the proton channels. This suggests a novel and simple mechanism for the switching between clockwise and counterclockwise rotation that is the basis of bacterial chemotaxis.

Carrier-like behaviour from a static but electrically responsive model pore

Journal of Theoretical Biology Elsevier 154:2 (1992) 249-260

Authors:

R Berry, DT Edmonds

The proton ladder, a static mechanism for ion/proton coports and counterports

European Biophysics Journal Springer Nature 20:4 (1991) 241-245

Authors:

DT Edmonds, R Berry

A catch-bond drives stator mechanosensitivity in the Bacterial Flagellar Motor

Authors:

AL Nord, E Gachon, R Perez-Carrasco, JA Nirody, A Barducci, RM Berry, F Pedaci

Distinct chemotactic behavior in the original Escherichia coli K-12 depending on forward-and-backward swimming, not on run-tumble movements

Authors:

Yoshiaki Kinosita, Tsubasa Ishida, Myu Yoshida, Rie Ito, Yusuke V Morimoto, Kazuki Goto, Richard M Berry, Takayuki Nishizaka, Yoshiyuki Sowa

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