Cargando…

A NMDA-receptor calcium influx assay sensitive to stimulation by glutamate and glycine/D-serine

N-methyl-D-aspartate-receptors (NMDARs) are ionotropic glutamate receptors that function in synaptic transmission, plasticity and cognition. Malfunction of NMDARs has been implicated in a variety of nervous system disorders, making them attractive therapeutic targets. Overexpression of functional NM...

Descripción completa

Detalles Bibliográficos
Autores principales: Guo, Hongqiu, Camargo, L. Miguel, Yeboah, Fred, Digan, Mary Ellen, Niu, Honglin, Pan, Yue, Reiling, Stephan, Soler-Llavina, Gilberto, Weihofen, Wilhelm A., Wang, Hao-Ran, Shanker, Y. Gopi, Stams, Travis, Bill, Anke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5599507/
https://www.ncbi.nlm.nih.gov/pubmed/28912557
http://dx.doi.org/10.1038/s41598-017-11947-x
_version_ 1783264070243188736
author Guo, Hongqiu
Camargo, L. Miguel
Yeboah, Fred
Digan, Mary Ellen
Niu, Honglin
Pan, Yue
Reiling, Stephan
Soler-Llavina, Gilberto
Weihofen, Wilhelm A.
Wang, Hao-Ran
Shanker, Y. Gopi
Stams, Travis
Bill, Anke
author_facet Guo, Hongqiu
Camargo, L. Miguel
Yeboah, Fred
Digan, Mary Ellen
Niu, Honglin
Pan, Yue
Reiling, Stephan
Soler-Llavina, Gilberto
Weihofen, Wilhelm A.
Wang, Hao-Ran
Shanker, Y. Gopi
Stams, Travis
Bill, Anke
author_sort Guo, Hongqiu
collection PubMed
description N-methyl-D-aspartate-receptors (NMDARs) are ionotropic glutamate receptors that function in synaptic transmission, plasticity and cognition. Malfunction of NMDARs has been implicated in a variety of nervous system disorders, making them attractive therapeutic targets. Overexpression of functional NMDAR in non-neuronal cells results in cell death by excitotoxicity, hindering the development of cell-based assays for NMDAR drug discovery. Here we report a plate-based, high-throughput approach to study NMDAR function. Our assay enables the functional study of NMDARs with different subunit composition after activation by glycine/D-serine or glutamate and hence presents the first plate-based, high throughput assay that allows for the measurement of NMDAR function in glycine/D-serine and/or glutamate sensitive modes. This allows to investigate the effect of small molecule modulators on the activation of NMDARs at different concentrations or combinations of the co-ligands. The reported assay system faithfully replicates the pharmacology of the receptor in response to known agonists, antagonists, positive and negative allosteric modulators, as well as the receptor’s sensitivity to magnesium and zinc. We believe that the ability to study the biology of NMDARs rapidly and in large scale screens will enable the identification of novel therapeutics whose discovery has otherwise been hindered by the limitations of existing cell based approaches.
format Online
Article
Text
id pubmed-5599507
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-55995072017-09-15 A NMDA-receptor calcium influx assay sensitive to stimulation by glutamate and glycine/D-serine Guo, Hongqiu Camargo, L. Miguel Yeboah, Fred Digan, Mary Ellen Niu, Honglin Pan, Yue Reiling, Stephan Soler-Llavina, Gilberto Weihofen, Wilhelm A. Wang, Hao-Ran Shanker, Y. Gopi Stams, Travis Bill, Anke Sci Rep Article N-methyl-D-aspartate-receptors (NMDARs) are ionotropic glutamate receptors that function in synaptic transmission, plasticity and cognition. Malfunction of NMDARs has been implicated in a variety of nervous system disorders, making them attractive therapeutic targets. Overexpression of functional NMDAR in non-neuronal cells results in cell death by excitotoxicity, hindering the development of cell-based assays for NMDAR drug discovery. Here we report a plate-based, high-throughput approach to study NMDAR function. Our assay enables the functional study of NMDARs with different subunit composition after activation by glycine/D-serine or glutamate and hence presents the first plate-based, high throughput assay that allows for the measurement of NMDAR function in glycine/D-serine and/or glutamate sensitive modes. This allows to investigate the effect of small molecule modulators on the activation of NMDARs at different concentrations or combinations of the co-ligands. The reported assay system faithfully replicates the pharmacology of the receptor in response to known agonists, antagonists, positive and negative allosteric modulators, as well as the receptor’s sensitivity to magnesium and zinc. We believe that the ability to study the biology of NMDARs rapidly and in large scale screens will enable the identification of novel therapeutics whose discovery has otherwise been hindered by the limitations of existing cell based approaches. Nature Publishing Group UK 2017-09-14 /pmc/articles/PMC5599507/ /pubmed/28912557 http://dx.doi.org/10.1038/s41598-017-11947-x Text en © The Author(s) 2017 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Guo, Hongqiu
Camargo, L. Miguel
Yeboah, Fred
Digan, Mary Ellen
Niu, Honglin
Pan, Yue
Reiling, Stephan
Soler-Llavina, Gilberto
Weihofen, Wilhelm A.
Wang, Hao-Ran
Shanker, Y. Gopi
Stams, Travis
Bill, Anke
A NMDA-receptor calcium influx assay sensitive to stimulation by glutamate and glycine/D-serine
title A NMDA-receptor calcium influx assay sensitive to stimulation by glutamate and glycine/D-serine
title_full A NMDA-receptor calcium influx assay sensitive to stimulation by glutamate and glycine/D-serine
title_fullStr A NMDA-receptor calcium influx assay sensitive to stimulation by glutamate and glycine/D-serine
title_full_unstemmed A NMDA-receptor calcium influx assay sensitive to stimulation by glutamate and glycine/D-serine
title_short A NMDA-receptor calcium influx assay sensitive to stimulation by glutamate and glycine/D-serine
title_sort nmda-receptor calcium influx assay sensitive to stimulation by glutamate and glycine/d-serine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5599507/
https://www.ncbi.nlm.nih.gov/pubmed/28912557
http://dx.doi.org/10.1038/s41598-017-11947-x
work_keys_str_mv AT guohongqiu anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT camargolmiguel anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT yeboahfred anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT diganmaryellen anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT niuhonglin anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT panyue anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT reilingstephan anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT solerllavinagilberto anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT weihofenwilhelma anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT wanghaoran anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT shankerygopi anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT stamstravis anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT billanke anmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT guohongqiu nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT camargolmiguel nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT yeboahfred nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT diganmaryellen nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT niuhonglin nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT panyue nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT reilingstephan nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT solerllavinagilberto nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT weihofenwilhelma nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT wanghaoran nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT shankerygopi nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT stamstravis nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine
AT billanke nmdareceptorcalciuminfluxassaysensitivetostimulationbyglutamateandglycinedserine