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Science (New York, N.Y.)|November 1, 1996
Requirement of rigid-body motion of transmembrane helices for light activation of rhodopsinD L Farrens, C Altenbach, K Yang, et al.Biochemistry|November 12, 1996
Structure and function in rhodopsin. Cysteines 65 and 316 are in proximity in a rhodopsin mutant as indicated by disulfide formation and interactions between attached spin labelsK Yang, D L Farrens, C Altenbach, et al.The Journal of Peptide Research : Official Journal of the American Peptide Society|December 5, 2002
Design, expression, and characterization of a synthetic human cannabinoid receptor and cannabinoid receptor/ G-protein fusion proteinD L Farrens, T D Dunham, J F Fay, et al.Biochemistry|September 24, 1996
Structural features and light-dependent changes in the cytoplasmic interhelical E-F loop region of rhodopsin: a site-directed spin-labeling studyC Altenbach, K Yang, D L Farrens, et al.The Journal of Biological Chemistry|January 13, 2001
Consensus and variant cAMP-regulated enhancers have distinct CREB-binding propertiesJ C Craig, M A Schumacher, S E Mansoor, et al.The Journal of Biological Chemistry|April 26, 2001
Functionally different agonists induce distinct conformations in the G protein coupling domain of the beta 2 adrenergic receptorP Ghanouni, Z Gryczynski, J J Steenhuis, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|October 12, 1999
Domains responsible for constitutive and Ca(2+)-dependent interactions between calmodulin and small conductance Ca(2+)-activated potassium channelsJ E Keen, R Khawaled, D L Farrens, et al.Pageof 2