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Molecular Pharmacology|April 1, 2006
Soluble mimics of the cytoplasmic face of the human V1-vascular vasopressin receptor bind arrestin2 and calmodulinNan Wu, Rosemarie Macion-Dazard, Stanley Nithianantham, et al.The Journal of Biological Chemistry|December 20, 2012
Engineering visual arrestin-1 with special functional characteristicsSergey A Vishnivetskiy, Qiuyan Chen, Maria C Palazzo, et al.Optics Letters|March 2, 2021
Manipulation of temporal localized structures in a vertical external-cavity surface-emitting laser with optical feedbackA Bartolo, T G Seidel, N Vigne, et al.Journal of Molecular Biology|November 18, 2005
Crystal structure of cone arrestin at 2.3A: evolution of receptor specificityR Bryan Sutton, Sergey A Vishnivetskiy, Justin Robert, et al.Journal of Neurochemistry|October 31, 2012
Identification of phosphorylation sites in the COOH-terminal tail of the μ-opioid receptorYing-Ju Chen, Sue Oldfield, Adrian J Butcher, et al.Biochemistry|June 18, 2003
Functional capabilities of an N-formyl peptide receptor-G(alpha)(i)(2) fusion protein: assemblies with G proteins and arrestinsMei Shi, Teresa A Bennett, Daniel F Cimino, et al.Nature|October 3, 1996
Beta-arrestin acts as a clathrin adaptor in endocytosis of the beta2-adrenergic receptorO B Goodman, J G Krupnick, F Santini, et al.The Journal of Biological Chemistry|January 13, 1995
Arrestin interactions with G protein-coupled receptors. Direct binding studies of wild type and mutant arrestins with rhodopsin, beta 2-adrenergic, and m2 muscarinic cholinergic receptorsV V Gurevich, S B Dion, J J Onorato, et al.Cellular Signalling|May 3, 2017
Differential manipulation of arrestin-3 binding to basal and agonist-activated G protein-coupled receptorsSusanne Prokop, Nicole A Perry, Sergey A Vishnivetskiy, et al.Structure (London, England : 1993)|June 13, 2008
A model for the solution structure of the rod arrestin tetramerSusan M Hanson, Eric S Dawson, Derek J Francis, et al.Pageof 38