نتایج جستجو برای: bacteriorhodopsin

تعداد نتایج: 1761  

Journal: :Biochimica et biophysica acta 2000
J Heberle

Bacteriorhodopsin is probably the best understood proton pump so far and is considered to be a model system for proton translocating membrane proteins. The basis of a molecular description of proton translocation is set by having the luxury of six highly resolved structural models at hand. Details of the mechanism and reaction dynamics were elucidated by a whole variety of biophysical technique...

Journal: :Biophysical journal 2011
Christian Kappel Helmut Grubmüller

Bacteriorhodopsin is a model system for membrane proteins. This seven transmembrane helical protein is embedded within a membrane structure called purple membrane. Its structural stability against mechanical stress was recently investigated by atomic force microscopy experiments, in which single proteins were extracted from the purple membrane. Here, we study this process by all-atom molecular ...

Journal: :Applied and environmental microbiology 1983
F Rodriguez-Valera J J Nieto F Ruiz-Berraquero

The role of light as an energy source for slightly aereated cultures of halobacteria was studied, using continuous cultures with low nutrient concentrations and a low oxygen supply. A series of experiments were carried out with non-illuminated and differently illuminated cultures and with different oxygen transfer rates. Under low oxygen availability, light proved to be a decisively important e...

Journal: :The Journal of biological chemistry 1983
J Krupinski J L Spudich G G Hammes

Phase-lifetime spectrophotometry has been used to study the rate processes associated with intermediates in the photocycling pigments in membrane vesicles of mutant strains of Halobacterium halobium. Vesicles deficient in bacteriorhodopsin, but containing halorhodopsin, were monitored with light at 490 nm. Two relaxation processes, with kinetic parameters largely independent of pH over the rang...

2011
Marcus Müller Christian Kappel Ulrich Zachariae Nicole Dölker

Bacteriorhodopsin is a model system for membrane proteins. This seven transmembrane helical protein isembedded within a membrane structure called purple membrane. Its structural stability against mechanical stress was recentlyinvestigated by atomic force microscopy experiments, in which single proteins were extracted from the purple membrane. Here,we study this process by all-atom m...

Journal: :Journal of Chemical Physics 2021

A new application of high-repetition rate, femtosecond Yb-laser/amplifier systems is introduced: transient 2D IR spectroscopy covering the time range from micro- to milliseconds. This approach intertwines measurement spectra with separation an actinic pump pulse and utilizes high repetition rate these lasers in two ways: by offering a resolution (10 µs) enabling many spectra. The well-studied p...

Journal: :Molecular Microbiology 2008
Valery Y Tarasov Hüseyin Besir Rita Schwaiger Kathrin Klee Katarina Furtwängler Friedhelm Pfeiffer Dieter Oesterhelt

Bacteriorhodopsin, the photosynthetic protein of Halobacterium salinarum, is optimally expressed under anaerobic growth conditions. We identified Brz (OE3104F, bacteriorhodopsin-regulating zinc finger protein), a new regulator of the bop gene. It is a small protein with a zinc finger motif, encoded directly upstream of the bop gene in the same orientation. Deletion of the brz gene caused a larg...

Journal: :European journal of biochemistry 1982
P Argos J K Rao P A Hargrave

A prediction algorithm based on physical characteristics of the twenty amino acids and refined by comparison to the proposed bacteriorhodopsin structure was devised to delineate likely membrane-buried regions in the primary sequences of proteins known to interact with the lipid bilayer. Application of the method to the sequence of the carboxyl terminal one-third of bovine rhodopsin predicted a ...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 1996
P Kolodner E P Lukashev Y C Ching D L Rousseau

The application of an external electric field to dry films of Asp-85-->Asn mutant bacteriorhodopsin causes deprotonation of the Schiff base, resulting in a shift of the optical absorption maximum from 600 nm to 400 nm. This is in marked contrast to the case of wild-type bacteriorhodopsin films, in which electric fields produce a red-shifted product whose optical properties are similar to those ...

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