Endocytosis as a biological response in receptor pharmacology: evaluation by fluorescence microscopy.

The activation of G-protein coupled receptors by agonist compounds results in diverse biological responses in cells, such as the endocytosis process consisting in the translocation of receptors from the plasma membrane to the cytoplasm within internalizing vesicles or endosomes. In order to function...

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Main Authors: Víctor M Campa, Almudena Capilla, María J Varela, Arlet M Acanda de la Rocha, Juan C Fernandez-Troyano, R Belén Barreiro, Juan F Lopez-Gimenez
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4388511?pdf=render
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spelling doaj-201ff29c6bff48d8aac8f0a2e394a0852020-11-25T02:01:11ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01104e012260410.1371/journal.pone.0122604Endocytosis as a biological response in receptor pharmacology: evaluation by fluorescence microscopy.Víctor M CampaAlmudena CapillaMaría J VarelaArlet M Acanda de la RochaJuan C Fernandez-TroyanoR Belén BarreiroJuan F Lopez-GimenezThe activation of G-protein coupled receptors by agonist compounds results in diverse biological responses in cells, such as the endocytosis process consisting in the translocation of receptors from the plasma membrane to the cytoplasm within internalizing vesicles or endosomes. In order to functionally evaluate endocytosis events resulted from pharmacological responses, we have developed an image analysis method -the Q-Endosomes algorithm- that specifically discriminates the fluorescent signal originated at endosomes from that one observed at the plasma membrane in images obtained from living cells by fluorescence microscopy. Mu opioid (MOP) receptor tagged at the carboxy-terminus with yellow fluorescent protein (YFP) and permanently expressed in HEK293 cells was used as experimental model to validate this methodology. Time-course experiments performed with several agonists resulted in different sigmoid curves depending on the drug used to initiate MOP receptor endocytosis. Thus, endocytosis resulting from the simultaneous activation of co-expressed MOP and serotonin 5-HT2C receptors by morphine plus serotonin was significantly different, in kinetics as well as in maximal response parameters, from the one caused by DAMGO, sufentanyl or methadone. Therefore, this analytical tool permits the pharmacological characterization of receptor endocytosis in living cells with functional and temporal resolution.http://europepmc.org/articles/PMC4388511?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Víctor M Campa
Almudena Capilla
María J Varela
Arlet M Acanda de la Rocha
Juan C Fernandez-Troyano
R Belén Barreiro
Juan F Lopez-Gimenez
spellingShingle Víctor M Campa
Almudena Capilla
María J Varela
Arlet M Acanda de la Rocha
Juan C Fernandez-Troyano
R Belén Barreiro
Juan F Lopez-Gimenez
Endocytosis as a biological response in receptor pharmacology: evaluation by fluorescence microscopy.
PLoS ONE
author_facet Víctor M Campa
Almudena Capilla
María J Varela
Arlet M Acanda de la Rocha
Juan C Fernandez-Troyano
R Belén Barreiro
Juan F Lopez-Gimenez
author_sort Víctor M Campa
title Endocytosis as a biological response in receptor pharmacology: evaluation by fluorescence microscopy.
title_short Endocytosis as a biological response in receptor pharmacology: evaluation by fluorescence microscopy.
title_full Endocytosis as a biological response in receptor pharmacology: evaluation by fluorescence microscopy.
title_fullStr Endocytosis as a biological response in receptor pharmacology: evaluation by fluorescence microscopy.
title_full_unstemmed Endocytosis as a biological response in receptor pharmacology: evaluation by fluorescence microscopy.
title_sort endocytosis as a biological response in receptor pharmacology: evaluation by fluorescence microscopy.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description The activation of G-protein coupled receptors by agonist compounds results in diverse biological responses in cells, such as the endocytosis process consisting in the translocation of receptors from the plasma membrane to the cytoplasm within internalizing vesicles or endosomes. In order to functionally evaluate endocytosis events resulted from pharmacological responses, we have developed an image analysis method -the Q-Endosomes algorithm- that specifically discriminates the fluorescent signal originated at endosomes from that one observed at the plasma membrane in images obtained from living cells by fluorescence microscopy. Mu opioid (MOP) receptor tagged at the carboxy-terminus with yellow fluorescent protein (YFP) and permanently expressed in HEK293 cells was used as experimental model to validate this methodology. Time-course experiments performed with several agonists resulted in different sigmoid curves depending on the drug used to initiate MOP receptor endocytosis. Thus, endocytosis resulting from the simultaneous activation of co-expressed MOP and serotonin 5-HT2C receptors by morphine plus serotonin was significantly different, in kinetics as well as in maximal response parameters, from the one caused by DAMGO, sufentanyl or methadone. Therefore, this analytical tool permits the pharmacological characterization of receptor endocytosis in living cells with functional and temporal resolution.
url http://europepmc.org/articles/PMC4388511?pdf=render
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