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The Conserved Arginine Cluster in the Insert of the Third Cytoplasmic Loop of the Long Form of the D(2) Dopamine Receptor (D(2L)-R) Acts as an Intracellular Retention Signal

This study examined whether the conserved arginine cluster present within the 29-amino acid insert of the long form of the D(2) dopamine receptor (D(2L)-R) confers its predominant intracellular localization. We hypothesized that the conserved arginine cluster (RRR) located within the insert could ac...

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Autores principales: Kubale, Valentina, Blagotinšek, Kaja, Nøhr, Jane, Eidne, Karin A., Vrecl, Milka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4964525/
https://www.ncbi.nlm.nih.gov/pubmed/27447620
http://dx.doi.org/10.3390/ijms17071152
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author Kubale, Valentina
Blagotinšek, Kaja
Nøhr, Jane
Eidne, Karin A.
Vrecl, Milka
author_facet Kubale, Valentina
Blagotinšek, Kaja
Nøhr, Jane
Eidne, Karin A.
Vrecl, Milka
author_sort Kubale, Valentina
collection PubMed
description This study examined whether the conserved arginine cluster present within the 29-amino acid insert of the long form of the D(2) dopamine receptor (D(2L)-R) confers its predominant intracellular localization. We hypothesized that the conserved arginine cluster (RRR) located within the insert could act as an RXR-type endoplasmic reticulum (ER) retention signal. Arginine residues (R) within the cluster at positions 267, 268, and 269 were charge-reserved to glutamic acids (E), either individually or in clusters, thus generating single, double, and triple D(2L)-R mutants. Through analyses of cellular localization by confocal microscopy and enzyme-linked immunosorbent assay (ELISA), radioligand binding assay, bioluminescence resonance energy transfer (BRET(2)) β-arrestin 2 (βarr2) recruitment assay, and cAMP signaling, it was revealed that charge reversal of the R residues at all three positions within the motif impaired their colocalization with ER marker calnexin and led to significantly improved cell surface expression. Additionally, these data demonstrate that an R to glutamic acid (E) substitution at position 2 within the RXR motif is not functionally permissible. Furthermore, all generated D(2L)-R mutants preserved their functional integrity regarding ligand binding, agonist-induced βarr2 recruitment and Gα(i)-mediated signaling. In summary, our results show that the conserved arginine cluster within the 29-amino acid insert of third cytoplasmic loop (IC3) of the D(2L)-R appears to be the ER retention signal.
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spelling pubmed-49645252016-08-03 The Conserved Arginine Cluster in the Insert of the Third Cytoplasmic Loop of the Long Form of the D(2) Dopamine Receptor (D(2L)-R) Acts as an Intracellular Retention Signal Kubale, Valentina Blagotinšek, Kaja Nøhr, Jane Eidne, Karin A. Vrecl, Milka Int J Mol Sci Article This study examined whether the conserved arginine cluster present within the 29-amino acid insert of the long form of the D(2) dopamine receptor (D(2L)-R) confers its predominant intracellular localization. We hypothesized that the conserved arginine cluster (RRR) located within the insert could act as an RXR-type endoplasmic reticulum (ER) retention signal. Arginine residues (R) within the cluster at positions 267, 268, and 269 were charge-reserved to glutamic acids (E), either individually or in clusters, thus generating single, double, and triple D(2L)-R mutants. Through analyses of cellular localization by confocal microscopy and enzyme-linked immunosorbent assay (ELISA), radioligand binding assay, bioluminescence resonance energy transfer (BRET(2)) β-arrestin 2 (βarr2) recruitment assay, and cAMP signaling, it was revealed that charge reversal of the R residues at all three positions within the motif impaired their colocalization with ER marker calnexin and led to significantly improved cell surface expression. Additionally, these data demonstrate that an R to glutamic acid (E) substitution at position 2 within the RXR motif is not functionally permissible. Furthermore, all generated D(2L)-R mutants preserved their functional integrity regarding ligand binding, agonist-induced βarr2 recruitment and Gα(i)-mediated signaling. In summary, our results show that the conserved arginine cluster within the 29-amino acid insert of third cytoplasmic loop (IC3) of the D(2L)-R appears to be the ER retention signal. MDPI 2016-07-19 /pmc/articles/PMC4964525/ /pubmed/27447620 http://dx.doi.org/10.3390/ijms17071152 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kubale, Valentina
Blagotinšek, Kaja
Nøhr, Jane
Eidne, Karin A.
Vrecl, Milka
The Conserved Arginine Cluster in the Insert of the Third Cytoplasmic Loop of the Long Form of the D(2) Dopamine Receptor (D(2L)-R) Acts as an Intracellular Retention Signal
title The Conserved Arginine Cluster in the Insert of the Third Cytoplasmic Loop of the Long Form of the D(2) Dopamine Receptor (D(2L)-R) Acts as an Intracellular Retention Signal
title_full The Conserved Arginine Cluster in the Insert of the Third Cytoplasmic Loop of the Long Form of the D(2) Dopamine Receptor (D(2L)-R) Acts as an Intracellular Retention Signal
title_fullStr The Conserved Arginine Cluster in the Insert of the Third Cytoplasmic Loop of the Long Form of the D(2) Dopamine Receptor (D(2L)-R) Acts as an Intracellular Retention Signal
title_full_unstemmed The Conserved Arginine Cluster in the Insert of the Third Cytoplasmic Loop of the Long Form of the D(2) Dopamine Receptor (D(2L)-R) Acts as an Intracellular Retention Signal
title_short The Conserved Arginine Cluster in the Insert of the Third Cytoplasmic Loop of the Long Form of the D(2) Dopamine Receptor (D(2L)-R) Acts as an Intracellular Retention Signal
title_sort conserved arginine cluster in the insert of the third cytoplasmic loop of the long form of the d(2) dopamine receptor (d(2l)-r) acts as an intracellular retention signal
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4964525/
https://www.ncbi.nlm.nih.gov/pubmed/27447620
http://dx.doi.org/10.3390/ijms17071152
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