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Delayed internalization and lack of recycling in a beta(2)-adrenergic receptor fused to the G protein alpha-subunit

BACKGROUND: Chimeric proteins obtained by the fusion of a G protein-coupled receptor (GPCR) sequence to the N-terminus of the G protein α-subunit have been extensively used to investigate several aspects of GPCR signalling. Although both the receptor and the G protein generally maintain a fully func...

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Autores principales: Di Certo, Maria Grazia, Batassa, Enrico M, Casella, Ida, Serafino, Annalucia, Floridi, Aristide, Passananti, Claudio, Molinari, Paola, Mattei, Elisabetta
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2569931/
https://www.ncbi.nlm.nih.gov/pubmed/18840275
http://dx.doi.org/10.1186/1471-2121-9-56
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author Di Certo, Maria Grazia
Batassa, Enrico M
Casella, Ida
Serafino, Annalucia
Floridi, Aristide
Passananti, Claudio
Molinari, Paola
Mattei, Elisabetta
author_facet Di Certo, Maria Grazia
Batassa, Enrico M
Casella, Ida
Serafino, Annalucia
Floridi, Aristide
Passananti, Claudio
Molinari, Paola
Mattei, Elisabetta
author_sort Di Certo, Maria Grazia
collection PubMed
description BACKGROUND: Chimeric proteins obtained by the fusion of a G protein-coupled receptor (GPCR) sequence to the N-terminus of the G protein α-subunit have been extensively used to investigate several aspects of GPCR signalling. Although both the receptor and the G protein generally maintain a fully functional state in such polypeptides, original observations made using a chimera between the β(2)-adrenergic receptor (β(2)AR) and Gα(s )indicated that the fusion to the α-subunit resulted in a marked reduction of receptor desensitization and down-regulation. To further investigate this phenomenon, we have compared the rates of internalization and recycling between wild-type and Gα(s)-fused β(2)AR. RESULTS: The rate of agonist-induced internalization, measured as the disappearance of cell surface immunofluorescence in HEK293 cells permanently expressing N-terminus tagged receptors, was reduced three-fold by receptor-G protein fusion. However, both fused and non-fused receptors translocated to the same endocytic compartment, as determined by dual-label confocal analysis of cells co-expressing both proteins and transferrin co-localization. Receptor recycling, determined as the reversion of surface immunofluorescence following the addition of antagonist to cells that were previously exposed to agonist, markedly differed between wild-type and fused receptors. While most of the internalized β(2)AR returned rapidly to the plasma membrane, β(2)AR-Gα(s )did not recycle, and the observed slow recovery for the fusion protein immunofluorescence was entirely accounted for by protein synthesis. CONCLUSION: The covalent linkage between β(2)AR and Gα(s )does not appear to alter the initial endocytic translocation of the two proteins, although there is reduced efficiency. It does, however, completely disrupt the process of receptor and G protein recycling. We conclude that the physical separation between receptor and Gα is not necessary for the transit to early endosomes, but is an essential requirement for the correct post-endocytic sorting and recycling of the two proteins.
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spelling pubmed-25699312008-10-18 Delayed internalization and lack of recycling in a beta(2)-adrenergic receptor fused to the G protein alpha-subunit Di Certo, Maria Grazia Batassa, Enrico M Casella, Ida Serafino, Annalucia Floridi, Aristide Passananti, Claudio Molinari, Paola Mattei, Elisabetta BMC Cell Biol Research Article BACKGROUND: Chimeric proteins obtained by the fusion of a G protein-coupled receptor (GPCR) sequence to the N-terminus of the G protein α-subunit have been extensively used to investigate several aspects of GPCR signalling. Although both the receptor and the G protein generally maintain a fully functional state in such polypeptides, original observations made using a chimera between the β(2)-adrenergic receptor (β(2)AR) and Gα(s )indicated that the fusion to the α-subunit resulted in a marked reduction of receptor desensitization and down-regulation. To further investigate this phenomenon, we have compared the rates of internalization and recycling between wild-type and Gα(s)-fused β(2)AR. RESULTS: The rate of agonist-induced internalization, measured as the disappearance of cell surface immunofluorescence in HEK293 cells permanently expressing N-terminus tagged receptors, was reduced three-fold by receptor-G protein fusion. However, both fused and non-fused receptors translocated to the same endocytic compartment, as determined by dual-label confocal analysis of cells co-expressing both proteins and transferrin co-localization. Receptor recycling, determined as the reversion of surface immunofluorescence following the addition of antagonist to cells that were previously exposed to agonist, markedly differed between wild-type and fused receptors. While most of the internalized β(2)AR returned rapidly to the plasma membrane, β(2)AR-Gα(s )did not recycle, and the observed slow recovery for the fusion protein immunofluorescence was entirely accounted for by protein synthesis. CONCLUSION: The covalent linkage between β(2)AR and Gα(s )does not appear to alter the initial endocytic translocation of the two proteins, although there is reduced efficiency. It does, however, completely disrupt the process of receptor and G protein recycling. We conclude that the physical separation between receptor and Gα is not necessary for the transit to early endosomes, but is an essential requirement for the correct post-endocytic sorting and recycling of the two proteins. BioMed Central 2008-10-07 /pmc/articles/PMC2569931/ /pubmed/18840275 http://dx.doi.org/10.1186/1471-2121-9-56 Text en Copyright © 2008 Di Certo et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Di Certo, Maria Grazia
Batassa, Enrico M
Casella, Ida
Serafino, Annalucia
Floridi, Aristide
Passananti, Claudio
Molinari, Paola
Mattei, Elisabetta
Delayed internalization and lack of recycling in a beta(2)-adrenergic receptor fused to the G protein alpha-subunit
title Delayed internalization and lack of recycling in a beta(2)-adrenergic receptor fused to the G protein alpha-subunit
title_full Delayed internalization and lack of recycling in a beta(2)-adrenergic receptor fused to the G protein alpha-subunit
title_fullStr Delayed internalization and lack of recycling in a beta(2)-adrenergic receptor fused to the G protein alpha-subunit
title_full_unstemmed Delayed internalization and lack of recycling in a beta(2)-adrenergic receptor fused to the G protein alpha-subunit
title_short Delayed internalization and lack of recycling in a beta(2)-adrenergic receptor fused to the G protein alpha-subunit
title_sort delayed internalization and lack of recycling in a beta(2)-adrenergic receptor fused to the g protein alpha-subunit
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2569931/
https://www.ncbi.nlm.nih.gov/pubmed/18840275
http://dx.doi.org/10.1186/1471-2121-9-56
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