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J L Spudich

Showing results (41-50 of 94) with videos related to

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Biophysical Journal|November 1, 1986
Excitation signal processing times in Halobacterium halobium phototaxisS A Sundberg, M Alam, J L Spudich
Proceedings of the National Academy of Sciences of the United States of America|February 3, 1999
The specificity of interaction of archaeal transducers with their cognate sensory rhodopsins is determined by their transmembrane helicesX N Zhang, J Zhu, J L Spudich
Biochemistry|August 9, 1988
Membrane potential modulates photocycling rates of bacterial rhodopsinsD Manor, C A Hasselbacher, J L Spudich
The Journal of Biological Chemistry|July 10, 1983
Phase-lifetime spectrophotometry of membranes from ion flux mutants of Halobacterium halobiumJ Krupinski, J L Spudich, G G Hammes
Journal of Bacteriology|November 1, 1996
Deletion mapping of the sites on the HtrI transducer for sensory rhodopsin I interactionB Perazzona, E N Spudich, J L Spudich
The Journal of Membrane Biology|January 1, 1984
Bacterial rhodopsins monitored with fluorescent dyes in vesicles and in vivoB E Ehrlich, C R Schen, J L Spudich
Protein Expression and Purification|December 1, 1995
Rapid high-yield purification and liposome reconstitution of polyhistidine-tagged sensory rhodopsin IM P Krebs, E N Spudich, J L Spudich
Journal of Bacteriology|November 1, 1994
Identification of distinct domains for signaling and receptor interaction of the sensory rhodopsin I transducer, HtrIV J Yao, E N Spudich, J L Spudich
Journal of Bacteriology|October 1, 1985
Selection and properties of phototaxis-deficient mutants of Halobacterium halobiumS A Sundberg, R A Bogomolni, J L Spudich
Proceedings of the National Academy of Sciences of the United States of America|April 11, 1995
Residue replacements of buried aspartyl and related residues in sensory rhodopsin I: D201N produces inverted phototaxis signalsK D Olson, X N Zhang, J L Spudich
Pageof 10

Showing results (41-50 of 94) with videos related to

Sort By:
Pageof 10
Biophysical Journal|November 1, 1986
Excitation signal processing times in Halobacterium halobium phototaxisS A Sundberg, M Alam, J L Spudich
Proceedings of the National Academy of Sciences of the United States of America|February 3, 1999
The specificity of interaction of archaeal transducers with their cognate sensory rhodopsins is determined by their transmembrane helicesX N Zhang, J Zhu, J L Spudich
Biochemistry|August 9, 1988
Membrane potential modulates photocycling rates of bacterial rhodopsinsD Manor, C A Hasselbacher, J L Spudich
The Journal of Biological Chemistry|July 10, 1983
Phase-lifetime spectrophotometry of membranes from ion flux mutants of Halobacterium halobiumJ Krupinski, J L Spudich, G G Hammes
Journal of Bacteriology|November 1, 1996
Deletion mapping of the sites on the HtrI transducer for sensory rhodopsin I interactionB Perazzona, E N Spudich, J L Spudich
The Journal of Membrane Biology|January 1, 1984
Bacterial rhodopsins monitored with fluorescent dyes in vesicles and in vivoB E Ehrlich, C R Schen, J L Spudich
Protein Expression and Purification|December 1, 1995
Rapid high-yield purification and liposome reconstitution of polyhistidine-tagged sensory rhodopsin IM P Krebs, E N Spudich, J L Spudich
Journal of Bacteriology|November 1, 1994
Identification of distinct domains for signaling and receptor interaction of the sensory rhodopsin I transducer, HtrIV J Yao, E N Spudich, J L Spudich
Journal of Bacteriology|October 1, 1985
Selection and properties of phototaxis-deficient mutants of Halobacterium halobiumS A Sundberg, R A Bogomolni, J L Spudich
Proceedings of the National Academy of Sciences of the United States of America|April 11, 1995
Residue replacements of buried aspartyl and related residues in sensory rhodopsin I: D201N produces inverted phototaxis signalsK D Olson, X N Zhang, J L Spudich
Pageof 10