Helix Formation in Arrestin Accompanies Recognition of Photoactivated Rhodopsin

Author:

Feuerstein Sophie E.12,Pulvermüller Alexander3,Hartmann Rudolf1,Granzin Joachim4,Stoldt Matthias12,Henklein Peter5,Ernst Oliver P.3,Heck Martin3,Willbold Dieter12,Koenig Bernd W.12

Affiliation:

1. Department Strukturbiochemie (ISB-3)

2. Institut für Physikalische Biologie, Heinrich-Heine-Universität Düsseldorf, D-40225 Düsseldorf, Germany

3. Institut für Medizinische Physik und Biophysik (CC2)

4. Department Molekulare Biophysik (ISB-2) of the Institut für Strukturbiologie und Biophysik, Forschungszentrum Jülich, D-52425 Jülich, Germany

5. Institut für Biochemie

Publisher

American Chemical Society (ACS)

Subject

Biochemistry

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1. GPCR targeting of E3 ubiquitin ligase MDM2 by inactive β-arrestin;Proceedings of the National Academy of Sciences;2023-07-03

2. Role of Monomer/Tetramer Equilibrium of Rod Visual Arrestin in the Interaction with Phosphorylated Rhodopsin;International Journal of Molecular Sciences;2023-03-04

3. Rhodopsin, light-sensor of vision;Progress in Retinal and Eye Research;2023-03

4. The Role of Reversible Phosphorylation of Drosophila Rhodopsin;International Journal of Molecular Sciences;2022-11-24

5. Arrestin-dependent internalization of rhodopsin-like G protein-coupled receptors;Biological Chemistry;2021-05-26

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