Cargando…

Expression and Interaction Proteomics of GluA1- and GluA3-Subunit-Containing AMPARs Reveal Distinct Protein Composition

The AMPA glutamate receptor (AMPAR) is the major type of synaptic excitatory ionotropic receptor in the brain. AMPARs have four different subunits, GluA1–4 (each encoded by different genes, Gria1, Gria2, Gria3 and Gria4), that can form distinct tetrameric assemblies. The most abundant AMPAR subtypes...

Descripción completa

Detalles Bibliográficos
Autores principales: van der Spek, Sophie J. F., Pandya, Nikhil J., Koopmans, Frank, Paliukhovich, Iryna, van der Schors, Roel C., Otten, Mylene, Smit, August B., Li, Ka Wan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9688267/
https://www.ncbi.nlm.nih.gov/pubmed/36429079
http://dx.doi.org/10.3390/cells11223648
_version_ 1784836225065025536
author van der Spek, Sophie J. F.
Pandya, Nikhil J.
Koopmans, Frank
Paliukhovich, Iryna
van der Schors, Roel C.
Otten, Mylene
Smit, August B.
Li, Ka Wan
author_facet van der Spek, Sophie J. F.
Pandya, Nikhil J.
Koopmans, Frank
Paliukhovich, Iryna
van der Schors, Roel C.
Otten, Mylene
Smit, August B.
Li, Ka Wan
author_sort van der Spek, Sophie J. F.
collection PubMed
description The AMPA glutamate receptor (AMPAR) is the major type of synaptic excitatory ionotropic receptor in the brain. AMPARs have four different subunits, GluA1–4 (each encoded by different genes, Gria1, Gria2, Gria3 and Gria4), that can form distinct tetrameric assemblies. The most abundant AMPAR subtypes in the hippocampus are GluA1/2 and GluA2/3 heterotetramers. Each subtype contributes differentially to mechanisms of synaptic plasticity, which may be in part caused by how these receptors are regulated by specific associated proteins. A broad range of AMPAR interacting proteins have been identified, including the well-studied transmembrane AMPA receptor regulatory proteins TARP-γ2 (also known as Stargazin) and TARP-γ8, Cornichon homolog 2 (CNIH-2) and many others. Several interactors were shown to affect biogenesis, AMPAR trafficking, and channel properties, alone or in distinct assemblies, and several revealed preferred binding to specific AMPAR subunits. To date, a systematic specific interactome analysis of the major GluA1/2 and GluA2/3 AMPAR subtypes separately is lacking. To reveal interactors belonging to specific AMPAR subcomplexes, we performed both expression and interaction proteomics on hippocampi of wildtype and Gria1- or Gria3 knock-out mice. Whereas GluA1/2 receptors co-purified TARP-γ8, synapse differentiation-induced protein 4 (SynDIG4, also known as Prrt1) and CNIH-2 with highest abundances, GluA2/3 receptors revealed strongest co-purification of CNIH-2, TARP-γ2, and Noelin1 (or Olfactomedin-1). Further analysis revealed that TARP-γ8-SynDIG4 interact directly and co-assemble into an AMPAR subcomplex especially at synaptic sites. Together, these data provide a framework for further functional analysis into AMPAR subtype specific pathways in health and disease.
format Online
Article
Text
id pubmed-9688267
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96882672022-11-25 Expression and Interaction Proteomics of GluA1- and GluA3-Subunit-Containing AMPARs Reveal Distinct Protein Composition van der Spek, Sophie J. F. Pandya, Nikhil J. Koopmans, Frank Paliukhovich, Iryna van der Schors, Roel C. Otten, Mylene Smit, August B. Li, Ka Wan Cells Article The AMPA glutamate receptor (AMPAR) is the major type of synaptic excitatory ionotropic receptor in the brain. AMPARs have four different subunits, GluA1–4 (each encoded by different genes, Gria1, Gria2, Gria3 and Gria4), that can form distinct tetrameric assemblies. The most abundant AMPAR subtypes in the hippocampus are GluA1/2 and GluA2/3 heterotetramers. Each subtype contributes differentially to mechanisms of synaptic plasticity, which may be in part caused by how these receptors are regulated by specific associated proteins. A broad range of AMPAR interacting proteins have been identified, including the well-studied transmembrane AMPA receptor regulatory proteins TARP-γ2 (also known as Stargazin) and TARP-γ8, Cornichon homolog 2 (CNIH-2) and many others. Several interactors were shown to affect biogenesis, AMPAR trafficking, and channel properties, alone or in distinct assemblies, and several revealed preferred binding to specific AMPAR subunits. To date, a systematic specific interactome analysis of the major GluA1/2 and GluA2/3 AMPAR subtypes separately is lacking. To reveal interactors belonging to specific AMPAR subcomplexes, we performed both expression and interaction proteomics on hippocampi of wildtype and Gria1- or Gria3 knock-out mice. Whereas GluA1/2 receptors co-purified TARP-γ8, synapse differentiation-induced protein 4 (SynDIG4, also known as Prrt1) and CNIH-2 with highest abundances, GluA2/3 receptors revealed strongest co-purification of CNIH-2, TARP-γ2, and Noelin1 (or Olfactomedin-1). Further analysis revealed that TARP-γ8-SynDIG4 interact directly and co-assemble into an AMPAR subcomplex especially at synaptic sites. Together, these data provide a framework for further functional analysis into AMPAR subtype specific pathways in health and disease. MDPI 2022-11-17 /pmc/articles/PMC9688267/ /pubmed/36429079 http://dx.doi.org/10.3390/cells11223648 Text en © 2022 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
van der Spek, Sophie J. F.
Pandya, Nikhil J.
Koopmans, Frank
Paliukhovich, Iryna
van der Schors, Roel C.
Otten, Mylene
Smit, August B.
Li, Ka Wan
Expression and Interaction Proteomics of GluA1- and GluA3-Subunit-Containing AMPARs Reveal Distinct Protein Composition
title Expression and Interaction Proteomics of GluA1- and GluA3-Subunit-Containing AMPARs Reveal Distinct Protein Composition
title_full Expression and Interaction Proteomics of GluA1- and GluA3-Subunit-Containing AMPARs Reveal Distinct Protein Composition
title_fullStr Expression and Interaction Proteomics of GluA1- and GluA3-Subunit-Containing AMPARs Reveal Distinct Protein Composition
title_full_unstemmed Expression and Interaction Proteomics of GluA1- and GluA3-Subunit-Containing AMPARs Reveal Distinct Protein Composition
title_short Expression and Interaction Proteomics of GluA1- and GluA3-Subunit-Containing AMPARs Reveal Distinct Protein Composition
title_sort expression and interaction proteomics of glua1- and glua3-subunit-containing ampars reveal distinct protein composition
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9688267/
https://www.ncbi.nlm.nih.gov/pubmed/36429079
http://dx.doi.org/10.3390/cells11223648
work_keys_str_mv AT vanderspeksophiejf expressionandinteractionproteomicsofglua1andglua3subunitcontainingamparsrevealdistinctproteincomposition
AT pandyanikhilj expressionandinteractionproteomicsofglua1andglua3subunitcontainingamparsrevealdistinctproteincomposition
AT koopmansfrank expressionandinteractionproteomicsofglua1andglua3subunitcontainingamparsrevealdistinctproteincomposition
AT paliukhovichiryna expressionandinteractionproteomicsofglua1andglua3subunitcontainingamparsrevealdistinctproteincomposition
AT vanderschorsroelc expressionandinteractionproteomicsofglua1andglua3subunitcontainingamparsrevealdistinctproteincomposition
AT ottenmylene expressionandinteractionproteomicsofglua1andglua3subunitcontainingamparsrevealdistinctproteincomposition
AT smitaugustb expressionandinteractionproteomicsofglua1andglua3subunitcontainingamparsrevealdistinctproteincomposition
AT likawan expressionandinteractionproteomicsofglua1andglua3subunitcontainingamparsrevealdistinctproteincomposition