C-terminal threonines and serines play distinct roles in the desensitization of rhodopsin, a G protein-coupled receptor

Author:

Azevedo Anthony W1,Doan Thuy2,Moaven Hormoz3,Sokal Iza1,Baameur Faiza4,Vishnivetskiy Sergey A4,Homan Kristoff T5,Tesmer John JG5,Gurevich Vsevolod V4ORCID,Chen Jeannie3,Rieke Fred16

Affiliation:

1. Department of Physiology and Biophysics, University of Washington, Seattle, United States

2. Department of Ophthalmology, University of Washington, Seattle, United States

3. Departments of Cell & Neurobiology and Ophthalmology, Zilkha Neurogenetic Institute, Keck School of Medicine of University of Southern California, Los Angeles, United States

4. Department of Pharmacology, Vanderbilt University School of Medicine, Nashville, United States

5. Life Sciences Institute, Departments of Pharmacology and Biological Chemistry, University of Michigan, Ann Arbor, United States

6. Howard Hughes Medical Institute, University of Washington, Seattle, United States

Abstract

Rod photoreceptors generate measurable responses to single-photon activation of individual molecules of the G protein-coupled receptor (GPCR), rhodopsin. Timely rhodopsin desensitization depends on phosphorylation and arrestin binding, which quenches G protein activation. Rhodopsin phosphorylation has been measured biochemically at C-terminal serine residues, suggesting that these residues are critical for producing fast, low-noise responses. The role of native threonine residues is unclear. We compared single-photon responses from rhodopsin lacking native serine or threonine phosphorylation sites. Contrary to expectation, serine-only rhodopsin generated prolonged step-like single-photon responses that terminated abruptly and randomly, whereas threonine-only rhodopsin generated responses that were only modestly slower than normal. We show that the step-like responses of serine-only rhodopsin reflect slow and stochastic arrestin binding. Thus, threonine sites play a privileged role in promoting timely arrestin binding and rhodopsin desensitization. Similar coordination of phosphorylation and arrestin binding may more generally permit tight control of the duration of GPCR activity.

Funder

Howard Hughes Medical Institute (HHMI)

National Institutes of Health (NIH)

Poncin Scholarship

American Heart Association (AHA)

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference73 articles.

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3. Experimental protocols alter phototransduction: the implications for retinal processing at visual threshold;Azevedo;The Journal of Neuroscience,2011

4. Responses of retinal rods to single photons;Baylor;The Journal of Physiology,1979

5. The photocurrent, noise and spectral sensitivity of rods of the monkey Macaca fascicularis;Baylor;The Journal of Physiology,1984

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