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John L Spudich

Showing results (1-10 of 108) with videos related to

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Biophysical Journal|October 9, 2014
Channelrhodopsin photochromic reactions provide multicolor optogenetic controlJohn L Spudich
Trends in Microbiology|September 29, 2006
The multitalented microbial sensory rhodopsinsJohn L Spudich
Biophysical Journal|February 11, 2014
A molecular voltmeter based on fluorescence dynamicsJohn L Spudich
Proceedings of the National Academy of Sciences of the United States of America|October 20, 2006
Three strategically placed hydrogen-bonding residues convert a proton pump into a sensory receptorYuki Sudo, John L Spudich
Current Opinion in Structural Biology|August 7, 2002
Sensory rhodopsin II: functional insights from structureJohn L Spudich, Hartmut Luecke
Biochemistry|March 20, 2002
Demonstration of 2:2 stoichiometry in the functional SRI-HtrI signaling complex in Halobacterium membranes by gene fusion analysisXinpu Chen, John L Spudich
The Journal of Biological Chemistry|July 15, 2004
Five residues in the HtrI transducer membrane-proximal domain close the cytoplasmic proton-conducting channel of sensory rhodopsin IXinpu Chen, John L Spudich
Photochemistry and Photobiology|March 19, 2008
Signal transfer in haloarchaeal sensory rhodopsin- transducer complexesJun Sasaki, John L Spudich
Biochemistry|November 26, 2003
Photostimulation of a sensory rhodopsin II/HtrII/Tsr fusion chimera activates CheA-autophosphorylation and CheY-phosphotransfer in vitroVishwa D Trivedi, John L Spudich
Structure (London, England : 1993)|August 7, 2008
Single-molecule tour de force: teasing apart a signaling complexWouter D Hoff, John L Spudich
Pageof 11

Showing results (1-10 of 108) with videos related to

Sort By:
Pageof 11
Biophysical Journal|October 9, 2014
Channelrhodopsin photochromic reactions provide multicolor optogenetic controlJohn L Spudich
Trends in Microbiology|September 29, 2006
The multitalented microbial sensory rhodopsinsJohn L Spudich
Biophysical Journal|February 11, 2014
A molecular voltmeter based on fluorescence dynamicsJohn L Spudich
Proceedings of the National Academy of Sciences of the United States of America|October 20, 2006
Three strategically placed hydrogen-bonding residues convert a proton pump into a sensory receptorYuki Sudo, John L Spudich
Current Opinion in Structural Biology|August 7, 2002
Sensory rhodopsin II: functional insights from structureJohn L Spudich, Hartmut Luecke
Biochemistry|March 20, 2002
Demonstration of 2:2 stoichiometry in the functional SRI-HtrI signaling complex in Halobacterium membranes by gene fusion analysisXinpu Chen, John L Spudich
The Journal of Biological Chemistry|July 15, 2004
Five residues in the HtrI transducer membrane-proximal domain close the cytoplasmic proton-conducting channel of sensory rhodopsin IXinpu Chen, John L Spudich
Photochemistry and Photobiology|March 19, 2008
Signal transfer in haloarchaeal sensory rhodopsin- transducer complexesJun Sasaki, John L Spudich
Biochemistry|November 26, 2003
Photostimulation of a sensory rhodopsin II/HtrII/Tsr fusion chimera activates CheA-autophosphorylation and CheY-phosphotransfer in vitroVishwa D Trivedi, John L Spudich
Structure (London, England : 1993)|August 7, 2008
Single-molecule tour de force: teasing apart a signaling complexWouter D Hoff, John L Spudich
Pageof 11