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Expression and purification of a functional heteromeric GABA(A) receptor for structural studies

The GABA-gated chloride channels of the Cys-loop receptor family, known as GABA(A) receptors, function as the primary gatekeepers of fast inhibitory neurotransmission in the central nervous system. Formed by the pentameric arrangement of five identical or homologous subunits, GABA(A) receptor subtyp...

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Autores principales: Claxton, Derek P., Gouaux, Eric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6054424/
https://www.ncbi.nlm.nih.gov/pubmed/30028870
http://dx.doi.org/10.1371/journal.pone.0201210
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author Claxton, Derek P.
Gouaux, Eric
author_facet Claxton, Derek P.
Gouaux, Eric
author_sort Claxton, Derek P.
collection PubMed
description The GABA-gated chloride channels of the Cys-loop receptor family, known as GABA(A) receptors, function as the primary gatekeepers of fast inhibitory neurotransmission in the central nervous system. Formed by the pentameric arrangement of five identical or homologous subunits, GABA(A) receptor subtypes are defined by the subunit composition that shape ion channel properties. An understanding of the structural basis of distinct receptor properties has been hindered by the absence of high resolution structural information for heteromeric assemblies. Robust heterologous expression and purification protocols of high expressing receptor constructs are vital for structural studies. Here, we describe a unique approach to screen for well-behaving and functional GABA(A) receptor subunit assemblies by using the Xenopus oocyte as an expression host in combination with fluorescence detection size exclusion chromatography (FSEC). To detect receptor expression, GFP fusions were introduced into the α1 subunit isoform. In contrast to expression of α1 alone, co-expression with the β subunit promoted formation of monodisperse assemblies. Mutagenesis experiments suggest that the α and β subunits can tolerate large truncations in the non-conserved M3/M4 cytoplasmic loop without compromising oligomeric assembly or GABA-gated channel activity, although removal of N-linked glycosylation sites is negatively correlated with expression level. Additionally, we report methods to improve GABA(A) receptor expression in mammalian cell culture that employ recombinant baculovirus transduction. From these methods we have identified a well-behaving minimal functional construct for the α1/β1 GABA(A) receptor subtype that can be purified in milligram quantities while retaining high affinity agonist binding activity.
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spelling pubmed-60544242018-07-27 Expression and purification of a functional heteromeric GABA(A) receptor for structural studies Claxton, Derek P. Gouaux, Eric PLoS One Research Article The GABA-gated chloride channels of the Cys-loop receptor family, known as GABA(A) receptors, function as the primary gatekeepers of fast inhibitory neurotransmission in the central nervous system. Formed by the pentameric arrangement of five identical or homologous subunits, GABA(A) receptor subtypes are defined by the subunit composition that shape ion channel properties. An understanding of the structural basis of distinct receptor properties has been hindered by the absence of high resolution structural information for heteromeric assemblies. Robust heterologous expression and purification protocols of high expressing receptor constructs are vital for structural studies. Here, we describe a unique approach to screen for well-behaving and functional GABA(A) receptor subunit assemblies by using the Xenopus oocyte as an expression host in combination with fluorescence detection size exclusion chromatography (FSEC). To detect receptor expression, GFP fusions were introduced into the α1 subunit isoform. In contrast to expression of α1 alone, co-expression with the β subunit promoted formation of monodisperse assemblies. Mutagenesis experiments suggest that the α and β subunits can tolerate large truncations in the non-conserved M3/M4 cytoplasmic loop without compromising oligomeric assembly or GABA-gated channel activity, although removal of N-linked glycosylation sites is negatively correlated with expression level. Additionally, we report methods to improve GABA(A) receptor expression in mammalian cell culture that employ recombinant baculovirus transduction. From these methods we have identified a well-behaving minimal functional construct for the α1/β1 GABA(A) receptor subtype that can be purified in milligram quantities while retaining high affinity agonist binding activity. Public Library of Science 2018-07-20 /pmc/articles/PMC6054424/ /pubmed/30028870 http://dx.doi.org/10.1371/journal.pone.0201210 Text en © 2018 Claxton, Gouaux http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Claxton, Derek P.
Gouaux, Eric
Expression and purification of a functional heteromeric GABA(A) receptor for structural studies
title Expression and purification of a functional heteromeric GABA(A) receptor for structural studies
title_full Expression and purification of a functional heteromeric GABA(A) receptor for structural studies
title_fullStr Expression and purification of a functional heteromeric GABA(A) receptor for structural studies
title_full_unstemmed Expression and purification of a functional heteromeric GABA(A) receptor for structural studies
title_short Expression and purification of a functional heteromeric GABA(A) receptor for structural studies
title_sort expression and purification of a functional heteromeric gaba(a) receptor for structural studies
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6054424/
https://www.ncbi.nlm.nih.gov/pubmed/30028870
http://dx.doi.org/10.1371/journal.pone.0201210
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