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Host-Cell Type Dependent Features of Recombinant Human Aquaporin-4 Orthogonal Arrays of Particles—New Insights for Structural and Functional Studies

The CNS plasma-membrane water channel aquaporin-4 (AQP4) is expressed as two major isoforms able to aggregate into supramolecular assemblies known as ‘orthogonal arrays of particles’ (OAPs). OAP subnanometric features are largely unknown mainly because a method for the expression, isolation, and cry...

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Autores principales: Pisani, Francesco, Simone, Laura, Mola, Maria Grazia, De Bellis, Manuela, Mastrapasqua, Maria, Ruggieri, Maddalena, Trojano, Maria, Nicchia, Grazia Paola, Svelto, Maria, Frigeri, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6406603/
https://www.ncbi.nlm.nih.gov/pubmed/30717425
http://dx.doi.org/10.3390/cells8020119
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author Pisani, Francesco
Simone, Laura
Mola, Maria Grazia
De Bellis, Manuela
Mastrapasqua, Maria
Ruggieri, Maddalena
Trojano, Maria
Nicchia, Grazia Paola
Svelto, Maria
Frigeri, Antonio
author_facet Pisani, Francesco
Simone, Laura
Mola, Maria Grazia
De Bellis, Manuela
Mastrapasqua, Maria
Ruggieri, Maddalena
Trojano, Maria
Nicchia, Grazia Paola
Svelto, Maria
Frigeri, Antonio
author_sort Pisani, Francesco
collection PubMed
description The CNS plasma-membrane water channel aquaporin-4 (AQP4) is expressed as two major isoforms able to aggregate into supramolecular assemblies known as ‘orthogonal arrays of particles’ (OAPs). OAP subnanometric features are largely unknown mainly because a method for the expression, isolation, and crystallization of integral human OAPs has not been developed. Here, the human OAP-forming isoform M23-AQP4 was expressed in insect and mammalian cell lines and AQP4 and OAP features evaluated. Native size exclusion chromatography was employed to isolate and analyze authentically folded OAPs, and neuromyelitis optica (NMO)-specific sandwich ELISA was developed to test OAP-integrity. The results demonstrate that in insect cells most AQP4 remains intracellular and unfolded and that OAPs are largely disassembled after the detergent extraction step. In mammalian cells, AQP4 showed regular plasma membrane targeting and OAPs exhibited strong post-extraction stability. Starting from the mammalian cell expression system, we isolated authentically folded OAPs. Together these data suggest a new strategy for expressing and isolating integral recombinant human OAPs and providing new insights into the cell-type dependent OAP-assembly and post-extraction stability, potentially useful to design new approaches for structural and functional studies of OAP and for other plasma membrane proteins organized into supramolecular structures.
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spelling pubmed-64066032019-03-19 Host-Cell Type Dependent Features of Recombinant Human Aquaporin-4 Orthogonal Arrays of Particles—New Insights for Structural and Functional Studies Pisani, Francesco Simone, Laura Mola, Maria Grazia De Bellis, Manuela Mastrapasqua, Maria Ruggieri, Maddalena Trojano, Maria Nicchia, Grazia Paola Svelto, Maria Frigeri, Antonio Cells Article The CNS plasma-membrane water channel aquaporin-4 (AQP4) is expressed as two major isoforms able to aggregate into supramolecular assemblies known as ‘orthogonal arrays of particles’ (OAPs). OAP subnanometric features are largely unknown mainly because a method for the expression, isolation, and crystallization of integral human OAPs has not been developed. Here, the human OAP-forming isoform M23-AQP4 was expressed in insect and mammalian cell lines and AQP4 and OAP features evaluated. Native size exclusion chromatography was employed to isolate and analyze authentically folded OAPs, and neuromyelitis optica (NMO)-specific sandwich ELISA was developed to test OAP-integrity. The results demonstrate that in insect cells most AQP4 remains intracellular and unfolded and that OAPs are largely disassembled after the detergent extraction step. In mammalian cells, AQP4 showed regular plasma membrane targeting and OAPs exhibited strong post-extraction stability. Starting from the mammalian cell expression system, we isolated authentically folded OAPs. Together these data suggest a new strategy for expressing and isolating integral recombinant human OAPs and providing new insights into the cell-type dependent OAP-assembly and post-extraction stability, potentially useful to design new approaches for structural and functional studies of OAP and for other plasma membrane proteins organized into supramolecular structures. MDPI 2019-02-02 /pmc/articles/PMC6406603/ /pubmed/30717425 http://dx.doi.org/10.3390/cells8020119 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pisani, Francesco
Simone, Laura
Mola, Maria Grazia
De Bellis, Manuela
Mastrapasqua, Maria
Ruggieri, Maddalena
Trojano, Maria
Nicchia, Grazia Paola
Svelto, Maria
Frigeri, Antonio
Host-Cell Type Dependent Features of Recombinant Human Aquaporin-4 Orthogonal Arrays of Particles—New Insights for Structural and Functional Studies
title Host-Cell Type Dependent Features of Recombinant Human Aquaporin-4 Orthogonal Arrays of Particles—New Insights for Structural and Functional Studies
title_full Host-Cell Type Dependent Features of Recombinant Human Aquaporin-4 Orthogonal Arrays of Particles—New Insights for Structural and Functional Studies
title_fullStr Host-Cell Type Dependent Features of Recombinant Human Aquaporin-4 Orthogonal Arrays of Particles—New Insights for Structural and Functional Studies
title_full_unstemmed Host-Cell Type Dependent Features of Recombinant Human Aquaporin-4 Orthogonal Arrays of Particles—New Insights for Structural and Functional Studies
title_short Host-Cell Type Dependent Features of Recombinant Human Aquaporin-4 Orthogonal Arrays of Particles—New Insights for Structural and Functional Studies
title_sort host-cell type dependent features of recombinant human aquaporin-4 orthogonal arrays of particles—new insights for structural and functional studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6406603/
https://www.ncbi.nlm.nih.gov/pubmed/30717425
http://dx.doi.org/10.3390/cells8020119
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