Cargando…

A Comparative Study on the Lysosomal Cation Channel TMEM175 Using Automated Whole-Cell Patch-Clamp, Lysosomal Patch-Clamp, and Solid Supported Membrane-Based Electrophysiology: Functional Characterization and High-Throughput Screening Assay Development

The lysosomal cation channel TMEM175 is a Parkinson’s disease-related protein and a promising drug target. Unlike whole-cell automated patch-clamp (APC), lysosomal patch-clamp (LPC) facilitates physiological conditions, but is not yet suitable for high-throughput screening (HTS) applications. Here,...

Descripción completa

Detalles Bibliográficos
Autores principales: Bazzone, Andre, Barthmes, Maria, George, Cecilia, Brinkwirth, Nina, Zerlotti, Rocco, Prinz, Valentin, Cole, Kim, Friis, Søren, Dickson, Alexander, Rice, Simon, Lim, Jongwon, Fern Toh, May, Mohammadi, Milad, Pau, Davide, Stone, David J., Renger, John J., Fertig, Niels
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10454728/
https://www.ncbi.nlm.nih.gov/pubmed/37628970
http://dx.doi.org/10.3390/ijms241612788
_version_ 1785096265980182528
author Bazzone, Andre
Barthmes, Maria
George, Cecilia
Brinkwirth, Nina
Zerlotti, Rocco
Prinz, Valentin
Cole, Kim
Friis, Søren
Dickson, Alexander
Rice, Simon
Lim, Jongwon
Fern Toh, May
Mohammadi, Milad
Pau, Davide
Stone, David J.
Renger, John J.
Fertig, Niels
author_facet Bazzone, Andre
Barthmes, Maria
George, Cecilia
Brinkwirth, Nina
Zerlotti, Rocco
Prinz, Valentin
Cole, Kim
Friis, Søren
Dickson, Alexander
Rice, Simon
Lim, Jongwon
Fern Toh, May
Mohammadi, Milad
Pau, Davide
Stone, David J.
Renger, John J.
Fertig, Niels
author_sort Bazzone, Andre
collection PubMed
description The lysosomal cation channel TMEM175 is a Parkinson’s disease-related protein and a promising drug target. Unlike whole-cell automated patch-clamp (APC), lysosomal patch-clamp (LPC) facilitates physiological conditions, but is not yet suitable for high-throughput screening (HTS) applications. Here, we apply solid supported membrane-based electrophysiology (SSME), which enables both direct access to lysosomes and high-throughput electrophysiological recordings. In SSME, ion translocation mediated by TMEM175 is stimulated using a concentration gradient at a resting potential of 0 mV. The concentration-dependent K(+) response exhibited an I/c curve with two distinct slopes, indicating the existence of two conducting states. We measured H(+) fluxes with a permeability ratio of P(H)/P(K) = 48,500, which matches literature findings from patch-clamp studies, validating the SSME approach. Additionally, TMEM175 displayed a high pH dependence. Decreasing cytosolic pH inhibited both K(+) and H(+) conductivity of TMEM175. Conversely, lysosomal pH and pH gradients did not have major effects on TMEM175. Finally, we developed HTS assays for drug screening and evaluated tool compounds (4-AP, Zn as inhibitors; DCPIB, arachidonic acid, SC-79 as enhancers) using SSME and APC. Additionally, we recorded EC(50) data for eight blinded TMEM175 enhancers and compared the results across all three assay technologies, including LPC, discussing their advantages and disadvantages.
format Online
Article
Text
id pubmed-10454728
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-104547282023-08-26 A Comparative Study on the Lysosomal Cation Channel TMEM175 Using Automated Whole-Cell Patch-Clamp, Lysosomal Patch-Clamp, and Solid Supported Membrane-Based Electrophysiology: Functional Characterization and High-Throughput Screening Assay Development Bazzone, Andre Barthmes, Maria George, Cecilia Brinkwirth, Nina Zerlotti, Rocco Prinz, Valentin Cole, Kim Friis, Søren Dickson, Alexander Rice, Simon Lim, Jongwon Fern Toh, May Mohammadi, Milad Pau, Davide Stone, David J. Renger, John J. Fertig, Niels Int J Mol Sci Article The lysosomal cation channel TMEM175 is a Parkinson’s disease-related protein and a promising drug target. Unlike whole-cell automated patch-clamp (APC), lysosomal patch-clamp (LPC) facilitates physiological conditions, but is not yet suitable for high-throughput screening (HTS) applications. Here, we apply solid supported membrane-based electrophysiology (SSME), which enables both direct access to lysosomes and high-throughput electrophysiological recordings. In SSME, ion translocation mediated by TMEM175 is stimulated using a concentration gradient at a resting potential of 0 mV. The concentration-dependent K(+) response exhibited an I/c curve with two distinct slopes, indicating the existence of two conducting states. We measured H(+) fluxes with a permeability ratio of P(H)/P(K) = 48,500, which matches literature findings from patch-clamp studies, validating the SSME approach. Additionally, TMEM175 displayed a high pH dependence. Decreasing cytosolic pH inhibited both K(+) and H(+) conductivity of TMEM175. Conversely, lysosomal pH and pH gradients did not have major effects on TMEM175. Finally, we developed HTS assays for drug screening and evaluated tool compounds (4-AP, Zn as inhibitors; DCPIB, arachidonic acid, SC-79 as enhancers) using SSME and APC. Additionally, we recorded EC(50) data for eight blinded TMEM175 enhancers and compared the results across all three assay technologies, including LPC, discussing their advantages and disadvantages. MDPI 2023-08-14 /pmc/articles/PMC10454728/ /pubmed/37628970 http://dx.doi.org/10.3390/ijms241612788 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bazzone, Andre
Barthmes, Maria
George, Cecilia
Brinkwirth, Nina
Zerlotti, Rocco
Prinz, Valentin
Cole, Kim
Friis, Søren
Dickson, Alexander
Rice, Simon
Lim, Jongwon
Fern Toh, May
Mohammadi, Milad
Pau, Davide
Stone, David J.
Renger, John J.
Fertig, Niels
A Comparative Study on the Lysosomal Cation Channel TMEM175 Using Automated Whole-Cell Patch-Clamp, Lysosomal Patch-Clamp, and Solid Supported Membrane-Based Electrophysiology: Functional Characterization and High-Throughput Screening Assay Development
title A Comparative Study on the Lysosomal Cation Channel TMEM175 Using Automated Whole-Cell Patch-Clamp, Lysosomal Patch-Clamp, and Solid Supported Membrane-Based Electrophysiology: Functional Characterization and High-Throughput Screening Assay Development
title_full A Comparative Study on the Lysosomal Cation Channel TMEM175 Using Automated Whole-Cell Patch-Clamp, Lysosomal Patch-Clamp, and Solid Supported Membrane-Based Electrophysiology: Functional Characterization and High-Throughput Screening Assay Development
title_fullStr A Comparative Study on the Lysosomal Cation Channel TMEM175 Using Automated Whole-Cell Patch-Clamp, Lysosomal Patch-Clamp, and Solid Supported Membrane-Based Electrophysiology: Functional Characterization and High-Throughput Screening Assay Development
title_full_unstemmed A Comparative Study on the Lysosomal Cation Channel TMEM175 Using Automated Whole-Cell Patch-Clamp, Lysosomal Patch-Clamp, and Solid Supported Membrane-Based Electrophysiology: Functional Characterization and High-Throughput Screening Assay Development
title_short A Comparative Study on the Lysosomal Cation Channel TMEM175 Using Automated Whole-Cell Patch-Clamp, Lysosomal Patch-Clamp, and Solid Supported Membrane-Based Electrophysiology: Functional Characterization and High-Throughput Screening Assay Development
title_sort comparative study on the lysosomal cation channel tmem175 using automated whole-cell patch-clamp, lysosomal patch-clamp, and solid supported membrane-based electrophysiology: functional characterization and high-throughput screening assay development
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10454728/
https://www.ncbi.nlm.nih.gov/pubmed/37628970
http://dx.doi.org/10.3390/ijms241612788
work_keys_str_mv AT bazzoneandre acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT barthmesmaria acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT georgececilia acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT brinkwirthnina acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT zerlottirocco acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT prinzvalentin acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT colekim acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT friissøren acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT dicksonalexander acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT ricesimon acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT limjongwon acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT ferntohmay acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT mohammadimilad acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT paudavide acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT stonedavidj acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT rengerjohnj acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT fertigniels acomparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT bazzoneandre comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT barthmesmaria comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT georgececilia comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT brinkwirthnina comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT zerlottirocco comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT prinzvalentin comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT colekim comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT friissøren comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT dicksonalexander comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT ricesimon comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT limjongwon comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT ferntohmay comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT mohammadimilad comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT paudavide comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT stonedavidj comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT rengerjohnj comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment
AT fertigniels comparativestudyonthelysosomalcationchanneltmem175usingautomatedwholecellpatchclamplysosomalpatchclampandsolidsupportedmembranebasedelectrophysiologyfunctionalcharacterizationandhighthroughputscreeningassaydevelopment