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Evaluation of Functional Selectivity of Haloperidol, Clozapine, and LASSBio-579, an Experimental Compound With Antipsychotic-Like Actions in Rodents, at G Protein and Arrestin Signaling Downstream of the Dopamine D(2) Receptor

LASSBio-579, an N-phenylpiperazine antipsychotic lead compound, has been previously reported as a D(2) receptor (D(2)R) ligand with antipsychotic-like activities in rodent models of schizophrenia. In order to better understand the molecular mechanism of action of LASSBio-579 and of its main metaboli...

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Autores principales: Silva, Rafaela R., Parreiras-e-Silva, Lucas T., Pompeu, Thais E.T., Duarte, Diego A., Fraga, Carlos A.M., Barreiro, Eliezer J., Menegatti, Ricardo, Costa-Neto, Claudio M., Noël, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6558205/
https://www.ncbi.nlm.nih.gov/pubmed/31214037
http://dx.doi.org/10.3389/fphar.2019.00628
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author Silva, Rafaela R.
Parreiras-e-Silva, Lucas T.
Pompeu, Thais E.T.
Duarte, Diego A.
Fraga, Carlos A.M.
Barreiro, Eliezer J.
Menegatti, Ricardo
Costa-Neto, Claudio M.
Noël, François
author_facet Silva, Rafaela R.
Parreiras-e-Silva, Lucas T.
Pompeu, Thais E.T.
Duarte, Diego A.
Fraga, Carlos A.M.
Barreiro, Eliezer J.
Menegatti, Ricardo
Costa-Neto, Claudio M.
Noël, François
author_sort Silva, Rafaela R.
collection PubMed
description LASSBio-579, an N-phenylpiperazine antipsychotic lead compound, has been previously reported as a D(2) receptor (D(2)R) ligand with antipsychotic-like activities in rodent models of schizophrenia. In order to better understand the molecular mechanism of action of LASSBio-579 and of its main metabolite, LQFM 037, we decided to address the hypothesis of functional selectivity at the D(2)R. HEK-293T cells transiently coexpressing the human long isoform of D(2) receptor (D(2)LR) and bioluminescence resonance energy transfer (BRET)-based biosensors were used. The antagonist activity was evaluated using different concentrations of the compounds in the presence of a submaximal concentration of dopamine (DA), after 5 and 20 min. For both signaling pathways, haloperidol, clozapine, and our compounds act as DA antagonists in a concentration-dependent manner, with haloperidol being by far the most potent, consistent with its nanomolar D(2)R affinity measured in binding assays. In our experimental conditions, only haloperidol presented a robust functional selectivity, being four- to fivefold more efficient for inhibiting translocation of β-arrestin-2 (β-arr2) than for antagonizing Gi activation. Present data are the first report on the effects of LASSBio-579 and LQFM 037 on the β-arr2 signaling pathway and further illustrate that the functional activity could vary depending on the assay conditions and approaches used.
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spelling pubmed-65582052019-06-18 Evaluation of Functional Selectivity of Haloperidol, Clozapine, and LASSBio-579, an Experimental Compound With Antipsychotic-Like Actions in Rodents, at G Protein and Arrestin Signaling Downstream of the Dopamine D(2) Receptor Silva, Rafaela R. Parreiras-e-Silva, Lucas T. Pompeu, Thais E.T. Duarte, Diego A. Fraga, Carlos A.M. Barreiro, Eliezer J. Menegatti, Ricardo Costa-Neto, Claudio M. Noël, François Front Pharmacol Pharmacology LASSBio-579, an N-phenylpiperazine antipsychotic lead compound, has been previously reported as a D(2) receptor (D(2)R) ligand with antipsychotic-like activities in rodent models of schizophrenia. In order to better understand the molecular mechanism of action of LASSBio-579 and of its main metabolite, LQFM 037, we decided to address the hypothesis of functional selectivity at the D(2)R. HEK-293T cells transiently coexpressing the human long isoform of D(2) receptor (D(2)LR) and bioluminescence resonance energy transfer (BRET)-based biosensors were used. The antagonist activity was evaluated using different concentrations of the compounds in the presence of a submaximal concentration of dopamine (DA), after 5 and 20 min. For both signaling pathways, haloperidol, clozapine, and our compounds act as DA antagonists in a concentration-dependent manner, with haloperidol being by far the most potent, consistent with its nanomolar D(2)R affinity measured in binding assays. In our experimental conditions, only haloperidol presented a robust functional selectivity, being four- to fivefold more efficient for inhibiting translocation of β-arrestin-2 (β-arr2) than for antagonizing Gi activation. Present data are the first report on the effects of LASSBio-579 and LQFM 037 on the β-arr2 signaling pathway and further illustrate that the functional activity could vary depending on the assay conditions and approaches used. Frontiers Media S.A. 2019-06-04 /pmc/articles/PMC6558205/ /pubmed/31214037 http://dx.doi.org/10.3389/fphar.2019.00628 Text en Copyright © 2019 Silva, Parreiras-e-Silva, Pompeu, Duarte, Fraga, Barreiro, Menegatti, Costa-Neto and Noël http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Silva, Rafaela R.
Parreiras-e-Silva, Lucas T.
Pompeu, Thais E.T.
Duarte, Diego A.
Fraga, Carlos A.M.
Barreiro, Eliezer J.
Menegatti, Ricardo
Costa-Neto, Claudio M.
Noël, François
Evaluation of Functional Selectivity of Haloperidol, Clozapine, and LASSBio-579, an Experimental Compound With Antipsychotic-Like Actions in Rodents, at G Protein and Arrestin Signaling Downstream of the Dopamine D(2) Receptor
title Evaluation of Functional Selectivity of Haloperidol, Clozapine, and LASSBio-579, an Experimental Compound With Antipsychotic-Like Actions in Rodents, at G Protein and Arrestin Signaling Downstream of the Dopamine D(2) Receptor
title_full Evaluation of Functional Selectivity of Haloperidol, Clozapine, and LASSBio-579, an Experimental Compound With Antipsychotic-Like Actions in Rodents, at G Protein and Arrestin Signaling Downstream of the Dopamine D(2) Receptor
title_fullStr Evaluation of Functional Selectivity of Haloperidol, Clozapine, and LASSBio-579, an Experimental Compound With Antipsychotic-Like Actions in Rodents, at G Protein and Arrestin Signaling Downstream of the Dopamine D(2) Receptor
title_full_unstemmed Evaluation of Functional Selectivity of Haloperidol, Clozapine, and LASSBio-579, an Experimental Compound With Antipsychotic-Like Actions in Rodents, at G Protein and Arrestin Signaling Downstream of the Dopamine D(2) Receptor
title_short Evaluation of Functional Selectivity of Haloperidol, Clozapine, and LASSBio-579, an Experimental Compound With Antipsychotic-Like Actions in Rodents, at G Protein and Arrestin Signaling Downstream of the Dopamine D(2) Receptor
title_sort evaluation of functional selectivity of haloperidol, clozapine, and lassbio-579, an experimental compound with antipsychotic-like actions in rodents, at g protein and arrestin signaling downstream of the dopamine d(2) receptor
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6558205/
https://www.ncbi.nlm.nih.gov/pubmed/31214037
http://dx.doi.org/10.3389/fphar.2019.00628
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