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Ligand-specific conformational transitions and intracellular transport are required for atypical chemokine receptor 3–mediated chemokine scavenging

The atypical chemokine receptor ACKR3 contributes to chemotaxis by binding, internalizing, and degrading the chemokines CXCL11 and CXCL12 to shape and terminate chemotactic gradients during development and immune responses. Although unable to trigger G protein activation, both ligands activate G pro...

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Autores principales: Montpas, Nicolas, St-Onge, Geneviève, Nama, Nassr, Rhainds, David, Benredjem, Besma, Girard, Mélanie, Hickson, Gilles, Pons, Véronique, Heveker, Nikolaus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2018
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5777261/
https://www.ncbi.nlm.nih.gov/pubmed/29180449
http://dx.doi.org/10.1074/jbc.M117.814947
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author Montpas, Nicolas
St-Onge, Geneviève
Nama, Nassr
Rhainds, David
Benredjem, Besma
Girard, Mélanie
Hickson, Gilles
Pons, Véronique
Heveker, Nikolaus
author_facet Montpas, Nicolas
St-Onge, Geneviève
Nama, Nassr
Rhainds, David
Benredjem, Besma
Girard, Mélanie
Hickson, Gilles
Pons, Véronique
Heveker, Nikolaus
author_sort Montpas, Nicolas
collection PubMed
description The atypical chemokine receptor ACKR3 contributes to chemotaxis by binding, internalizing, and degrading the chemokines CXCL11 and CXCL12 to shape and terminate chemotactic gradients during development and immune responses. Although unable to trigger G protein activation, both ligands activate G protein–independent ACKR3 responses and prompt arrestin recruitment. This offers a model to specifically study ligand-specific receptor conformations leading to G protein–independent signaling and to functional parameters such as receptor transport and chemokine degradation. We here show chemokine specificity in arrestin recruitment, by different effects of single amino acid substitutions in ACKR3 on arrestin in response to CXCL12 or CXCL11. Chemokine specificity in receptor transport was also observed, as CXCL11 induced faster receptor internalization, slower recycling, and longer intracellular sojourn of ACKR3 than CXCL12. Internalization and recycling rates of the ACKR3 R142(3.50)A substitution in response to each chemokine were similar; however, ACKR3 R142(3.50)A degraded only CXCL12 and not CXCL11. This suggests that ligand-specific intracellular receptor transport is required for chemokine degradation. Remarkably, the failure of ACKR3 R142(3.50)A to degrade CXCL11 was not caused by the lack of arrestin recruitment; rather, arrestin was entirely dispensable for scavenging of either chemokine. This suggests the involvement of another, yet unidentified, ACKR3 effector in scavenging. In summary, our study correlates ACKR3 ligand-specific conformational transitions with chemokine-dependent receptor transport dynamics and points toward unexpected ligand specificity in the mechanisms of chemokine degradation.
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spelling pubmed-57772612018-01-25 Ligand-specific conformational transitions and intracellular transport are required for atypical chemokine receptor 3–mediated chemokine scavenging Montpas, Nicolas St-Onge, Geneviève Nama, Nassr Rhainds, David Benredjem, Besma Girard, Mélanie Hickson, Gilles Pons, Véronique Heveker, Nikolaus J Biol Chem Membrane Biology The atypical chemokine receptor ACKR3 contributes to chemotaxis by binding, internalizing, and degrading the chemokines CXCL11 and CXCL12 to shape and terminate chemotactic gradients during development and immune responses. Although unable to trigger G protein activation, both ligands activate G protein–independent ACKR3 responses and prompt arrestin recruitment. This offers a model to specifically study ligand-specific receptor conformations leading to G protein–independent signaling and to functional parameters such as receptor transport and chemokine degradation. We here show chemokine specificity in arrestin recruitment, by different effects of single amino acid substitutions in ACKR3 on arrestin in response to CXCL12 or CXCL11. Chemokine specificity in receptor transport was also observed, as CXCL11 induced faster receptor internalization, slower recycling, and longer intracellular sojourn of ACKR3 than CXCL12. Internalization and recycling rates of the ACKR3 R142(3.50)A substitution in response to each chemokine were similar; however, ACKR3 R142(3.50)A degraded only CXCL12 and not CXCL11. This suggests that ligand-specific intracellular receptor transport is required for chemokine degradation. Remarkably, the failure of ACKR3 R142(3.50)A to degrade CXCL11 was not caused by the lack of arrestin recruitment; rather, arrestin was entirely dispensable for scavenging of either chemokine. This suggests the involvement of another, yet unidentified, ACKR3 effector in scavenging. In summary, our study correlates ACKR3 ligand-specific conformational transitions with chemokine-dependent receptor transport dynamics and points toward unexpected ligand specificity in the mechanisms of chemokine degradation. American Society for Biochemistry and Molecular Biology 2018-01-19 2017-11-27 /pmc/articles/PMC5777261/ /pubmed/29180449 http://dx.doi.org/10.1074/jbc.M117.814947 Text en © 2018 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Membrane Biology
Montpas, Nicolas
St-Onge, Geneviève
Nama, Nassr
Rhainds, David
Benredjem, Besma
Girard, Mélanie
Hickson, Gilles
Pons, Véronique
Heveker, Nikolaus
Ligand-specific conformational transitions and intracellular transport are required for atypical chemokine receptor 3–mediated chemokine scavenging
title Ligand-specific conformational transitions and intracellular transport are required for atypical chemokine receptor 3–mediated chemokine scavenging
title_full Ligand-specific conformational transitions and intracellular transport are required for atypical chemokine receptor 3–mediated chemokine scavenging
title_fullStr Ligand-specific conformational transitions and intracellular transport are required for atypical chemokine receptor 3–mediated chemokine scavenging
title_full_unstemmed Ligand-specific conformational transitions and intracellular transport are required for atypical chemokine receptor 3–mediated chemokine scavenging
title_short Ligand-specific conformational transitions and intracellular transport are required for atypical chemokine receptor 3–mediated chemokine scavenging
title_sort ligand-specific conformational transitions and intracellular transport are required for atypical chemokine receptor 3–mediated chemokine scavenging
topic Membrane Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5777261/
https://www.ncbi.nlm.nih.gov/pubmed/29180449
http://dx.doi.org/10.1074/jbc.M117.814947
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