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M Sheves

Showing results (21-30 of 63) with videos related to

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The Journal of Biological Chemistry|June 9, 1995
The role of water in retinal complexation to bacterio-opsinI Rousso, I Brodsky, A Lewis, et al.
Biophysical Journal|July 21, 2001
Specific binding sites for cations in bacteriorhodopsinT Eliash, L Weiner, M Ottolenghi, et al.
Biophysical Journal|April 1, 1995
Molecular dynamics study of the 13-cis form (bR548) of bacteriorhodopsin and its photocycleI Logunov, W Humphrey, K Schulten, et al.
Biochemistry|January 10, 2001
Salt dependence of the formation and stability of the signaling state in G protein-coupled receptors: evidence for the involvement of the Hofmeister effectR Vogel, G B Fan, M Sheves, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 13, 1997
Reducing the flexibility of retinal restores a wild-type-like photocycle in bacteriorhodopsin mutants defective in protein-retinal couplingJ K Delaney, G Yahalom, M Sheves, et al.
Biochemistry|October 31, 2001
Anions stabilize a metarhodopsin II-like photoproduct with a protonated Schiff baseR Vogel, G B Fan, F Siebert, et al.
Biophysical Journal|August 9, 2005
The hydroxylamine reaction of sensory rhodopsin II: light-induced conformational alterations with C13=C14 nonisomerizable pigmentU Zadok, J P Klare, M Engelhard, et al.
Biochemistry|July 29, 2000
The molecular origin of the inhibition of transducin activation in rhodopsin lacking the 9-methyl group of the retinal chromophore: a UV-Vis and FTIR spectroscopic studyR Vogel, G B Fan, M Sheves, et al.
Biophysical Journal|July 2, 1998
Effective light-induced hydroxylamine reactions occur with C13 = C14 nonisomerizable bacteriorhodopsin pigmentsI Rousso, Y Gat, A Lewis, et al.
Biochemistry|September 19, 1995
Time-resolved titrations of the Schiff base and of the Asp85 residue in artificial bacteriorhodopsinsS Druckmann, M Ottolenghi, I Rousso, et al.
Pageof 7

Showing results (21-30 of 63) with videos related to

Sort By:
Pageof 7
The Journal of Biological Chemistry|June 9, 1995
The role of water in retinal complexation to bacterio-opsinI Rousso, I Brodsky, A Lewis, et al.
Biophysical Journal|July 21, 2001
Specific binding sites for cations in bacteriorhodopsinT Eliash, L Weiner, M Ottolenghi, et al.
Biophysical Journal|April 1, 1995
Molecular dynamics study of the 13-cis form (bR548) of bacteriorhodopsin and its photocycleI Logunov, W Humphrey, K Schulten, et al.
Biochemistry|January 10, 2001
Salt dependence of the formation and stability of the signaling state in G protein-coupled receptors: evidence for the involvement of the Hofmeister effectR Vogel, G B Fan, M Sheves, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 13, 1997
Reducing the flexibility of retinal restores a wild-type-like photocycle in bacteriorhodopsin mutants defective in protein-retinal couplingJ K Delaney, G Yahalom, M Sheves, et al.
Biochemistry|October 31, 2001
Anions stabilize a metarhodopsin II-like photoproduct with a protonated Schiff baseR Vogel, G B Fan, F Siebert, et al.
Biophysical Journal|August 9, 2005
The hydroxylamine reaction of sensory rhodopsin II: light-induced conformational alterations with C13=C14 nonisomerizable pigmentU Zadok, J P Klare, M Engelhard, et al.
Biochemistry|July 29, 2000
The molecular origin of the inhibition of transducin activation in rhodopsin lacking the 9-methyl group of the retinal chromophore: a UV-Vis and FTIR spectroscopic studyR Vogel, G B Fan, M Sheves, et al.
Biophysical Journal|July 2, 1998
Effective light-induced hydroxylamine reactions occur with C13 = C14 nonisomerizable bacteriorhodopsin pigmentsI Rousso, Y Gat, A Lewis, et al.
Biochemistry|September 19, 1995
Time-resolved titrations of the Schiff base and of the Asp85 residue in artificial bacteriorhodopsinsS Druckmann, M Ottolenghi, I Rousso, et al.
Pageof 7