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Impedance-Based Phenotypic Readout of Transporter Function: A Case for Glutamate Transporters

Excitatory amino acid transporters (EAAT/SLC1) mediate Na(+)-dependent uptake of extracellular glutamate and are potential drug targets for neurological disorders. Conventional methods to assess glutamate transport in vitro are based on radiolabels, fluorescent dyes or electrophysiology, which poten...

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Autores principales: Sijben, Hubert J., Dall’ Acqua, Laura, Liu, Rongfang, Jarret, Abigail, Christodoulaki, Eirini, Onstein, Svenja, Wolf, Gernot, Verburgt, Simone J., Le Dévédec, Sylvia E., Wiedmer, Tabea, Superti-Furga, Giulio, IJzerman, Adriaan P., Heitman, Laura H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9169222/
https://www.ncbi.nlm.nih.gov/pubmed/35677430
http://dx.doi.org/10.3389/fphar.2022.872335
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author Sijben, Hubert J.
Dall’ Acqua, Laura
Liu, Rongfang
Jarret, Abigail
Christodoulaki, Eirini
Onstein, Svenja
Wolf, Gernot
Verburgt, Simone J.
Le Dévédec, Sylvia E.
Wiedmer, Tabea
Superti-Furga, Giulio
IJzerman, Adriaan P.
Heitman, Laura H.
author_facet Sijben, Hubert J.
Dall’ Acqua, Laura
Liu, Rongfang
Jarret, Abigail
Christodoulaki, Eirini
Onstein, Svenja
Wolf, Gernot
Verburgt, Simone J.
Le Dévédec, Sylvia E.
Wiedmer, Tabea
Superti-Furga, Giulio
IJzerman, Adriaan P.
Heitman, Laura H.
author_sort Sijben, Hubert J.
collection PubMed
description Excitatory amino acid transporters (EAAT/SLC1) mediate Na(+)-dependent uptake of extracellular glutamate and are potential drug targets for neurological disorders. Conventional methods to assess glutamate transport in vitro are based on radiolabels, fluorescent dyes or electrophysiology, which potentially compromise the cell’s physiology and are generally less suited for primary drug screens. Here, we describe a novel label-free method to assess human EAAT function in living cells, i.e., without the use of chemical modifications to the substrate or cellular environment. In adherent HEK293 cells overexpressing EAAT1, stimulation with glutamate or aspartate induced cell spreading, which was detected in real-time using an impedance-based biosensor. This change in cell morphology was prevented in the presence of the Na(+)/K(+)-ATPase inhibitor ouabain and EAAT inhibitors, which suggests the substrate-induced response was ion-dependent and transporter-specific. A mechanistic explanation for the phenotypic response was substantiated by actin cytoskeleton remodeling and changes in the intracellular levels of the osmolyte taurine, which suggests that the response involves cell swelling. In addition, substrate-induced cellular responses were observed for cells expressing other EAAT subtypes, as well as in a breast cancer cell line (MDA-MB-468) with endogenous EAAT1 expression. These findings allowed the development of a label-free high-throughput screening assay, which could be beneficial in early drug discovery for EAATs and holds potential for the study of other transport proteins that modulate cell shape.
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spelling pubmed-91692222022-06-07 Impedance-Based Phenotypic Readout of Transporter Function: A Case for Glutamate Transporters Sijben, Hubert J. Dall’ Acqua, Laura Liu, Rongfang Jarret, Abigail Christodoulaki, Eirini Onstein, Svenja Wolf, Gernot Verburgt, Simone J. Le Dévédec, Sylvia E. Wiedmer, Tabea Superti-Furga, Giulio IJzerman, Adriaan P. Heitman, Laura H. Front Pharmacol Pharmacology Excitatory amino acid transporters (EAAT/SLC1) mediate Na(+)-dependent uptake of extracellular glutamate and are potential drug targets for neurological disorders. Conventional methods to assess glutamate transport in vitro are based on radiolabels, fluorescent dyes or electrophysiology, which potentially compromise the cell’s physiology and are generally less suited for primary drug screens. Here, we describe a novel label-free method to assess human EAAT function in living cells, i.e., without the use of chemical modifications to the substrate or cellular environment. In adherent HEK293 cells overexpressing EAAT1, stimulation with glutamate or aspartate induced cell spreading, which was detected in real-time using an impedance-based biosensor. This change in cell morphology was prevented in the presence of the Na(+)/K(+)-ATPase inhibitor ouabain and EAAT inhibitors, which suggests the substrate-induced response was ion-dependent and transporter-specific. A mechanistic explanation for the phenotypic response was substantiated by actin cytoskeleton remodeling and changes in the intracellular levels of the osmolyte taurine, which suggests that the response involves cell swelling. In addition, substrate-induced cellular responses were observed for cells expressing other EAAT subtypes, as well as in a breast cancer cell line (MDA-MB-468) with endogenous EAAT1 expression. These findings allowed the development of a label-free high-throughput screening assay, which could be beneficial in early drug discovery for EAATs and holds potential for the study of other transport proteins that modulate cell shape. Frontiers Media S.A. 2022-05-23 /pmc/articles/PMC9169222/ /pubmed/35677430 http://dx.doi.org/10.3389/fphar.2022.872335 Text en Copyright © 2022 Sijben, Dall’ Acqua, Liu, Jarret, Christodoulaki, Onstein, Wolf, Verburgt, Le Dévédec, Wiedmer, Superti-Furga, IJzerman and Heitman. 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
Sijben, Hubert J.
Dall’ Acqua, Laura
Liu, Rongfang
Jarret, Abigail
Christodoulaki, Eirini
Onstein, Svenja
Wolf, Gernot
Verburgt, Simone J.
Le Dévédec, Sylvia E.
Wiedmer, Tabea
Superti-Furga, Giulio
IJzerman, Adriaan P.
Heitman, Laura H.
Impedance-Based Phenotypic Readout of Transporter Function: A Case for Glutamate Transporters
title Impedance-Based Phenotypic Readout of Transporter Function: A Case for Glutamate Transporters
title_full Impedance-Based Phenotypic Readout of Transporter Function: A Case for Glutamate Transporters
title_fullStr Impedance-Based Phenotypic Readout of Transporter Function: A Case for Glutamate Transporters
title_full_unstemmed Impedance-Based Phenotypic Readout of Transporter Function: A Case for Glutamate Transporters
title_short Impedance-Based Phenotypic Readout of Transporter Function: A Case for Glutamate Transporters
title_sort impedance-based phenotypic readout of transporter function: a case for glutamate transporters
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9169222/
https://www.ncbi.nlm.nih.gov/pubmed/35677430
http://dx.doi.org/10.3389/fphar.2022.872335
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