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International Journal of Molecular Sciences|August 12, 2022
Short Arrestin-3-Derived Peptides Activate JNK3 in CellsNicole A Perry-Hauser, Tamer S Kaoud, Henriette Stoy, et al.
Molecular Biology of the Cell|December 26, 2014
Arrestins regulate cell spreading and motility via focal adhesion dynamicsWhitney M Cleghorn, Kevin M Branch, Seunghyi Kook, et al.
Chaos (Woodbury, N.Y.)|April 25, 2023
Temporal localized states and square-waves in semiconductor micro-resonators with strong time-delayed feedbackElias R Koch, Thomas G Seidel, Julien Javaloyes, et al.
Physical Review. E|July 24, 2019
Effects of time-periodic forcing in a Cahn-Hilliard model for Langmuir-Blodgett transferPhong-Minh Timmy Ly, Uwe Thiele, Lifeng Chi, et al.
The Journal of Biological Chemistry|July 13, 2012
Manipulation of very few receptor discriminator residues greatly enhances receptor specificity of non-visual arrestinsLuis E Gimenez, Sergey A Vishnivetskiy, Faiza Baameur, et al.
Journal of Molecular Biology|January 11, 2011
Crystal structure of arrestin-3 reveals the basis of the difference in receptor binding between two non-visual subtypesXuanzhi Zhan, Luis E Gimenez, Vsevolod V Gurevich, et al.
Molecular Pharmacology|April 16, 2003
The interaction of a constitutively active arrestin with the arrestin-insensitive 5-HT(2A) receptor induces agonist-independent internalizationJohn A Gray, Anushree Bhatnagar, Vsevolod V Gurevich, et al.
Molecular Pharmacology|September 30, 2008
An intracellular loop 2 amino acid residue determines differential binding of arrestin to the dopamine D2 and D3 receptorsHongxiang Lan, Martha M Teeter, Vsevolod V Gurevich, et al.
Cell|April 29, 1999
The 2.8 A crystal structure of visual arrestin: a model for arrestin's regulationJ A Hirsch, C Schubert, V V Gurevich, et al.
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