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Updated: Aug 17, 2026

Examining the Conformational Dynamics of Membrane Proteins in situ with Site-directed Fluorescence Labeling
Published on: May 29, 2011
Shuttling between two protein conformations: the common mechanism for sensory transduction and ion transport
1Department of Microbiology & Molecular Genetics, University of Texas Medical School, 6431 Fannin, Houston, TX 77030, USA. spudich@utmmg.med.uth.tmc.edu
Abstract:
It has recently become known that light-dependent interconversions between two protein conformations underlie both ion transport in bacteriorhodopsin and halorhodopsin and phototaxis signaling by the sensory rhodopsins of halobacteria. In the transport proteins, the two conformations facilitate alternating access of an occluded ion-binding site to the two surfaces of the membrane, and in the sensory receptors the conformations modulate signal-transducer activity. In sensory rhodopsin I, the same conformational equilibrium is implicated in providing both sensory signaling when bound to its transducer and proton transport when free.
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