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The EMBO Journal|March 3, 2007
Structure and function of the visual arrestin oligomerSusan M Hanson, Ned Van Eps, Derek J Francis, et al.
Physical Chemistry Chemical Physics : PCCP|June 24, 2011
A cryogenic beam of refractory, chemically reactive molecules with expansion coolingNicholas R Hutzler, Maxwell F Parsons, Yulia V Gurevich, et al.
Handbook of Experimental Pharmacology|December 3, 2013
Self-association of arrestin family membersQiuyan Chen, Ya Zhuo, Miyeon Kim, et al.
The Journal of Biological Chemistry|February 7, 2016
A G Protein-biased Designer G Protein-coupled Receptor Useful for Studying the Physiological Relevance of Gq/11-dependent Signaling PathwaysJianxin Hu, Matthew Stern, Luis E Gimenez, et al.
Protein Engineering|April 1, 1990
Functional expression in vitro of bovine visual rhodopsinS A Zozulya, V V Gurevich, T A Zvyaga, et al.
Angewandte Chemie (International Ed. in English)|July 29, 2014
Peptide modifications differentially alter G protein-coupled receptor internalization and signaling biasVeronika Mäde, Stefanie Babilon, Navjeet Jolly, et al.
Cellular Signalling|July 29, 2019
Arrestin-3 interaction with maternal embryonic leucine-zipper kinaseNicole A Perry, Kevin P Fialkowski, Tamer S Kaoud, et al.
The Journal of Biological Chemistry|October 23, 2010
Monomeric rhodopsin is sufficient for normal rhodopsin kinase (GRK1) phosphorylation and arrestin-1 bindingTimothy H Bayburt, Sergey A Vishnivetskiy, Mark A McLean, et al.
Journal of Molecular Biology|March 16, 2007
Arrestin mobilizes signaling proteins to the cytoskeleton and redirects their activitySusan M Hanson, Whitney M Cleghorn, Derek J Francis, et al.
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