Dynamics of Bacteriorhodopsin in the Dark‐Adapted State from Solution Nuclear Magnetic Resonance Spectroscopy
- Journal Article
To achieve efficient proton pumping in the light‐driven proton pump bacteriorhodopsin (bR), the protein must be tightly coupled to the retinal to rapidly convert retinal isomerization into protein structural rearrangements. Methyl group dynamics of bR embedded in lipid nanodiscs were determined in the dark‐adapted state, and were found to be mostly well ordered at the cytosolic side. Methyl groups in the M145A mutant of bR, which displays only 10 % residual proton pumping activity, are less well ordered, suggesting a link between side‐chain dynamics on the cytosolic side of the bR cavity and proton pumping activity. In addition, slow conformational exchange, attributed to low frequency motions of aromatic rings, was indirectly observed for residues on the extracellular side of the bR cavity. This may be related to reorganization of the water network. These observations provide a detailed picture of previously undescribed equilibrium dynamics on different time scales for ground‐state bR. © 2020 Wiley‐VCH GmbH. Show more
Journal / seriesAngewandte Chemie. International Edition
Pages / Article No.
SubjectDynamics; Membrane proteins; Retinal isomerization; Rhodopsin; Solution NMR
Organisational unit03782 - Riek, Roland / Riek, Roland
MoreShow all metadata