Previous C13-NMR studies showed that two of the four internal aspartic acid residues (Asp-96 and Asp-115) of bacteriorhodopsin (bR) are protonated up to pH = 10, but no accurate pKa of these residues has been determined. In this work, infrared spectroscopy with the attenuated total reflection technique was used to characterize pH-dependent structural changes of ground-state, dark-adapted wild-type bacteriorhodopsin and its mutant (D96N) with aspartic acid-96 replaced by asparagine. Data indicated deprotonation of Asp-96 at high pH (pKa = 11.4 +/- 0.1), but no Asp-115 titration was observed. The analysis of the whole spectral region characteristic to complex conformational changes in the protein showed a more complicated titration with an ad...
AbstractIn the presented study the low pH photocycle of proteorhodopsin is extensively investigated ...
The tertiary structural changes occurring during the photocycle of bacteriorhodopsin (BR) are assign...
AbstractThe existence of two different M-state structures in the photocycle of the bacteriorhodopsin...
Previous C13-NMR studies showed that two of the four internal aspartic acid residues (Asp-96 and Asp...
AbstractThe structural changes in bacteriorhodopsin during the photocycle are investigated. Time res...
The proton-pumping mechanism of bacteriorhodopsin is dependent on a photolysis-induced transfer of a...
AbstractBacteriorhodopsin (bR) is the light-driven proton pump found in the purple membrane of Halob...
AbstractThe role of the extracellular Glu side chains of bacteriorhodopsin in the proton transport m...
AbstractHigh-resolution solid-state13C NMR spectra of the ground state and M intermediate of the bac...
We have used the technique of Fourier transform infrared difference spectroscopy to study the photoc...
AbstractCation removal or acidification induces a transition of bacteriorhodopsin (BR568) to a blue ...
AbstractThe role of proline residues in the proton pump mechanism of bacteriorhodopsin is investigat...
High quality infrared difference spectra of bacteriorhodopsin (bR) were obtained in order to study i...
Abstractpharaonis phoborhodopsin (ppR; also called pharaonis sensory rhodopsin II, psR-II) is a phot...
Titration of Asp-85, the proton acceptor and part of the counterion in bacteriorhodopsin, over a wid...
AbstractIn the presented study the low pH photocycle of proteorhodopsin is extensively investigated ...
The tertiary structural changes occurring during the photocycle of bacteriorhodopsin (BR) are assign...
AbstractThe existence of two different M-state structures in the photocycle of the bacteriorhodopsin...
Previous C13-NMR studies showed that two of the four internal aspartic acid residues (Asp-96 and Asp...
AbstractThe structural changes in bacteriorhodopsin during the photocycle are investigated. Time res...
The proton-pumping mechanism of bacteriorhodopsin is dependent on a photolysis-induced transfer of a...
AbstractBacteriorhodopsin (bR) is the light-driven proton pump found in the purple membrane of Halob...
AbstractThe role of the extracellular Glu side chains of bacteriorhodopsin in the proton transport m...
AbstractHigh-resolution solid-state13C NMR spectra of the ground state and M intermediate of the bac...
We have used the technique of Fourier transform infrared difference spectroscopy to study the photoc...
AbstractCation removal or acidification induces a transition of bacteriorhodopsin (BR568) to a blue ...
AbstractThe role of proline residues in the proton pump mechanism of bacteriorhodopsin is investigat...
High quality infrared difference spectra of bacteriorhodopsin (bR) were obtained in order to study i...
Abstractpharaonis phoborhodopsin (ppR; also called pharaonis sensory rhodopsin II, psR-II) is a phot...
Titration of Asp-85, the proton acceptor and part of the counterion in bacteriorhodopsin, over a wid...
AbstractIn the presented study the low pH photocycle of proteorhodopsin is extensively investigated ...
The tertiary structural changes occurring during the photocycle of bacteriorhodopsin (BR) are assign...
AbstractThe existence of two different M-state structures in the photocycle of the bacteriorhodopsin...