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Gaelle cassier
Gaelle cassier













Molecular and Cellular Endocrinology 2019, 484, 34-41. The structural basis of the arrestin binding to GPCRs. Critical role of the finger loop in arrestin binding to the receptors. Cellular and Molecular Life Sciences 2019, 76 Plethora of functions packed into 45 kDa arrestins: biological implications and possible therapeutic strategies. Computational design and characterization of nanobody-derived peptides that stabilize the active conformation of the β2-adrenergic receptor (β2-AR). Milan Sencanski, Sanja Glisic, Marko Šnajder, Nevena Veljkovic, Nataša Poklar Ulrih, Janez Mavri, Milka Vrecl.Targeting arrestin interactions with its partners for therapeutic purposes. Conformational Dynamics and Functional Implications of Phosphorylated β-Arrestins. Hyunook Kang, Han-Sol Yang, Ah Young Ki, Seung-Bum Ko, Kwon Woo Kim, Chang Yong Shim, Kiae Kim, Hee-Jung Choi, Ka Young Chung.Crystal Structure of β-Arrestin 2 in Complex with CXCR7 Phosphopeptide. Kyungjin Min, Hye-Jin Yoon, Ji Young Park, Mithu Baidya, Hemlata Dwivedi-Agnihotri, Jagannath Maharana, Madhu Chaturvedi, Ka Young Chung, Arun K.Many faces of the GPCR-arrestin interaction. Journal of Biological Chemistry 2020, 295 A non–GPCR-binding partner interacts with a novel surface on β-arrestin1 to mediate GPCR signaling. MicroRNAs Regulating Cytoskeleton Dynamics, Endocytosis, and Cell Motility-A Link Between Neurodegeneration and Cancer?. Dmytro Gerasymchuk, Anastasiia Hubiernatorova, Andrii Domanskyi.How GPCR Phosphorylation Patterns Orchestrate Arrestin-Mediated Signaling. Heydenreich, Carl-Mikael Suomivuori, Connor Brinton, Raphael J.L. Phosphorylated peptide of G protein-coupled receptor induces dimerization in activated arrestin. Stadler, Joachim Granzin, Anneliese Cousin, Renu Batra-Safferling. Receptor-Arrestin Interactions: The GPCR Perspective. Mohammad Seyedabadi, Mehdi Gharghabi, Eugenia V.Lysine in the lariat loop of arrestins does not serve as phosphate sensor. The α‐arrestin family of ubiquitin ligase adaptors links metabolism with selective endocytosis. Jennifer Kahlhofer, Sebastien Leon, David Teis, Oliver Schmidt.Biochemical insights into structure and function of arrestins. The finger loop as an activation sensor in arrestin. International Journal of Molecular Sciences 2021, 22 New Structural Perspectives in G Protein-Coupled Receptor-Mediated Src Family Kinase Activation. Arrestin2/Clathrin Interaction Is Regulated by Key N- and C-Terminal Regions in Arrestin2. Helix Formation in Arrestin Accompanies Recognition of Photoactivated Rhodopsin. Ernst, Martin Heck, Dieter Willbold and Bernd W. Feuerstein, Alexander Pulvermüller, Rudolf Hartmann, Joachim Granzin, Matthias Stoldt, Peter Henklein, Oliver P. Elucidation of Inositol Hexaphosphate and Heparin Interaction Sites and Conformational Changes in Arrestin-1 by Solution Nuclear Magnetic Resonance. Binding between a Distal C-Terminus Fragment of Cannabinoid Receptor 1 and Arrestin-2. Mercier, Alexandros Makriyannis, and Spiro Pavlopoulos. Ubiquitin Ligase Parkin Promotes Mdm2–Arrestin Interaction but Inhibits Arrestin Ubiquitination. Rafiuddin Ahmed, Xuanzhi Zhan, Xiufeng Song, Seunghyi Kook, Vsevolod V. A Single Mutation in Arrestin-2 Prevents ERK1/2 Activation by Reducing c-Raf1 Binding. Sergio Coffa, Maya Breitman, Benjamin W.Nonvisual Arrestins Function as Simple Scaffolds Assembling the MKK4–JNK3α2 Signaling Complex. Understanding the Differential Selectivity of Arrestins toward the Phosphorylation State of the Receptor. This article is cited by 146 publications.















Gaelle cassier