Cargando…

A Dynamic Mass Redistribution Assay for the Human Sweet Taste Receptor Uncovers G-Protein Dependent Biased Ligands

The sweet taste receptor is rather unique, recognizing a diverse repertoire of natural or synthetic ligands, with a surprisingly large structural diversity, and with potencies stretching over more than six orders of magnitude. Yet, it is not clear if different cell-based assays can faithfully report...

Descripción completa

Detalles Bibliográficos
Autores principales: Servant, Nicole B., Williams, Mark E., Brust, Paul F., Tang, Huixian, Wong, Melissa S., Chen, Qing, Lebl-Rinnova, Marketa, Adamski-Werner, Sara L., Tachdjian, Catherine, Servant, Guy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8893300/
https://www.ncbi.nlm.nih.gov/pubmed/35250580
http://dx.doi.org/10.3389/fphar.2022.832529
_version_ 1784662362249232384
author Servant, Nicole B.
Williams, Mark E.
Brust, Paul F.
Tang, Huixian
Wong, Melissa S.
Chen, Qing
Lebl-Rinnova, Marketa
Adamski-Werner, Sara L.
Tachdjian, Catherine
Servant, Guy
author_facet Servant, Nicole B.
Williams, Mark E.
Brust, Paul F.
Tang, Huixian
Wong, Melissa S.
Chen, Qing
Lebl-Rinnova, Marketa
Adamski-Werner, Sara L.
Tachdjian, Catherine
Servant, Guy
author_sort Servant, Nicole B.
collection PubMed
description The sweet taste receptor is rather unique, recognizing a diverse repertoire of natural or synthetic ligands, with a surprisingly large structural diversity, and with potencies stretching over more than six orders of magnitude. Yet, it is not clear if different cell-based assays can faithfully report the relative potencies and efficacies of these molecules. Indeed, up to now, sweet taste receptor agonists have been almost exclusively characterized using cell-based assays developed with overexpressed and promiscuous G proteins. This non-physiological coupling has allowed the quantification of receptor activity via phospholipase C activation and calcium mobilization measurements in heterologous cells on a FLIPR system, for example. Here, we developed a novel assay for the human sweet taste receptor where endogenous G proteins and signaling pathways are recruited by the activated receptor. The effects of several sweet taste receptor agonists and other types of modulators were recorded by measuring changes in dynamic mass redistribution (DMR) using an Epic(®) reader. Potency and efficacy values obtained in the DMR assay were compared to those results obtained with the classical FLIPR assay. Results demonstrate that for some ligands, the two assay systems provide similar information. However, a clear bias for the FLIPR assay was observed for one third of the agonists evaluated, suggesting that the use of non-physiological coupling may influence the potency and efficacy of sweet taste receptor ligands. Replacing the promiscuous G protein with a chimeric G protein containing the C-terminal tail 25 residues of the physiologically relevant G protein subunit Gα(gustducin) reduced or abrogated bias.
format Online
Article
Text
id pubmed-8893300
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-88933002022-03-04 A Dynamic Mass Redistribution Assay for the Human Sweet Taste Receptor Uncovers G-Protein Dependent Biased Ligands Servant, Nicole B. Williams, Mark E. Brust, Paul F. Tang, Huixian Wong, Melissa S. Chen, Qing Lebl-Rinnova, Marketa Adamski-Werner, Sara L. Tachdjian, Catherine Servant, Guy Front Pharmacol Pharmacology The sweet taste receptor is rather unique, recognizing a diverse repertoire of natural or synthetic ligands, with a surprisingly large structural diversity, and with potencies stretching over more than six orders of magnitude. Yet, it is not clear if different cell-based assays can faithfully report the relative potencies and efficacies of these molecules. Indeed, up to now, sweet taste receptor agonists have been almost exclusively characterized using cell-based assays developed with overexpressed and promiscuous G proteins. This non-physiological coupling has allowed the quantification of receptor activity via phospholipase C activation and calcium mobilization measurements in heterologous cells on a FLIPR system, for example. Here, we developed a novel assay for the human sweet taste receptor where endogenous G proteins and signaling pathways are recruited by the activated receptor. The effects of several sweet taste receptor agonists and other types of modulators were recorded by measuring changes in dynamic mass redistribution (DMR) using an Epic(®) reader. Potency and efficacy values obtained in the DMR assay were compared to those results obtained with the classical FLIPR assay. Results demonstrate that for some ligands, the two assay systems provide similar information. However, a clear bias for the FLIPR assay was observed for one third of the agonists evaluated, suggesting that the use of non-physiological coupling may influence the potency and efficacy of sweet taste receptor ligands. Replacing the promiscuous G protein with a chimeric G protein containing the C-terminal tail 25 residues of the physiologically relevant G protein subunit Gα(gustducin) reduced or abrogated bias. Frontiers Media S.A. 2022-02-17 /pmc/articles/PMC8893300/ /pubmed/35250580 http://dx.doi.org/10.3389/fphar.2022.832529 Text en Copyright © 2022 Servant, Williams, Brust, Tang, Wong, Chen, Lebl-Rinnova, Adamski-Werner, Tachdjian and Servant. https://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
Servant, Nicole B.
Williams, Mark E.
Brust, Paul F.
Tang, Huixian
Wong, Melissa S.
Chen, Qing
Lebl-Rinnova, Marketa
Adamski-Werner, Sara L.
Tachdjian, Catherine
Servant, Guy
A Dynamic Mass Redistribution Assay for the Human Sweet Taste Receptor Uncovers G-Protein Dependent Biased Ligands
title A Dynamic Mass Redistribution Assay for the Human Sweet Taste Receptor Uncovers G-Protein Dependent Biased Ligands
title_full A Dynamic Mass Redistribution Assay for the Human Sweet Taste Receptor Uncovers G-Protein Dependent Biased Ligands
title_fullStr A Dynamic Mass Redistribution Assay for the Human Sweet Taste Receptor Uncovers G-Protein Dependent Biased Ligands
title_full_unstemmed A Dynamic Mass Redistribution Assay for the Human Sweet Taste Receptor Uncovers G-Protein Dependent Biased Ligands
title_short A Dynamic Mass Redistribution Assay for the Human Sweet Taste Receptor Uncovers G-Protein Dependent Biased Ligands
title_sort dynamic mass redistribution assay for the human sweet taste receptor uncovers g-protein dependent biased ligands
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8893300/
https://www.ncbi.nlm.nih.gov/pubmed/35250580
http://dx.doi.org/10.3389/fphar.2022.832529
work_keys_str_mv AT servantnicoleb adynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT williamsmarke adynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT brustpaulf adynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT tanghuixian adynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT wongmelissas adynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT chenqing adynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT leblrinnovamarketa adynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT adamskiwernersaral adynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT tachdjiancatherine adynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT servantguy adynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT servantnicoleb dynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT williamsmarke dynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT brustpaulf dynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT tanghuixian dynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT wongmelissas dynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT chenqing dynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT leblrinnovamarketa dynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT adamskiwernersaral dynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT tachdjiancatherine dynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands
AT servantguy dynamicmassredistributionassayforthehumansweettastereceptoruncoversgproteindependentbiasedligands