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The Journal of Biological Chemistry|December 14, 2023
A rapid, tag-free way to purify functional GPCRsAnthony D Shumate, David L FarrensPhotochemical & Photobiological Sciences : Official Journal of the European Photochemistry Association and the European Society for Photobiology|October 23, 2010
What site-directed labeling studies tell us about the mechanism of rhodopsin activation and G-protein bindingDavid L FarrensThe Journal of Biological Chemistry|August 14, 2013
A constitutively activating mutation alters the dynamics and energetics of a key conformational change in a ligand-free G protein-coupled receptorHisao Tsukamoto, David L FarrensBiochimica Et Biophysica Acta|November 5, 2013
Fluorescence spectroscopy of rhodopsins: insights and approachesUlrike Alexiev, David L FarrensVision Research|October 31, 2006
Arrestin can act as a regulator of rhodopsin photochemistryMartha E Sommer, David L FarrensVision Research|November 13, 2003
Assessing structural elements that influence Schiff base stability: mutants E113Q and D190N destabilize rhodopsin through different mechanismsJay M Janz, David L FarrensThe Journal of Biological Chemistry|December 3, 2014
Conformational selection and equilibrium governs the ability of retinals to bind opsinChristopher T Schafer, David L FarrensProceedings of the National Academy of Sciences of the United States of America|June 24, 2015
Structural dynamics and energetics underlying allosteric inactivation of the cannabinoid receptor CB1Jonathan F Fay, David L FarrensBiochemistry|July 21, 2004
High-throughput protein structural analysis using site-directed fluorescence labeling and the bimane derivative (2-pyridyl)dithiobimaneSteven E Mansoor, David L FarrensThe Journal of Biological Chemistry|April 9, 2004
Rhodopsin activation exposes a key hydrophobic binding site for the transducin alpha-subunit C terminusJay M Janz, David L FarrensPageof 5