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Characterization of SLCO5A1/OATP5A1, a Solute Carrier Transport Protein with Non-Classical Function

Organic anion transporting polypeptides (OATP/SLCO) have been identified to mediate the uptake of a broad range of mainly amphipathic molecules. Human OATP5A1 was found to be expressed in the epithelium of many cancerous and non-cancerous tissues throughout the body but protein characterization and...

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Autores principales: Sebastian, Katrin, Detro-Dassen, Silvia, Rinis, Natalie, Fahrenkamp, Dirk, Müller-Newen, Gerhard, Merk, Hans F., Schmalzing, Günther, Zwadlo-Klarwasser, Gabriele, Baron, Jens Malte
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3869781/
https://www.ncbi.nlm.nih.gov/pubmed/24376674
http://dx.doi.org/10.1371/journal.pone.0083257
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author Sebastian, Katrin
Detro-Dassen, Silvia
Rinis, Natalie
Fahrenkamp, Dirk
Müller-Newen, Gerhard
Merk, Hans F.
Schmalzing, Günther
Zwadlo-Klarwasser, Gabriele
Baron, Jens Malte
author_facet Sebastian, Katrin
Detro-Dassen, Silvia
Rinis, Natalie
Fahrenkamp, Dirk
Müller-Newen, Gerhard
Merk, Hans F.
Schmalzing, Günther
Zwadlo-Klarwasser, Gabriele
Baron, Jens Malte
author_sort Sebastian, Katrin
collection PubMed
description Organic anion transporting polypeptides (OATP/SLCO) have been identified to mediate the uptake of a broad range of mainly amphipathic molecules. Human OATP5A1 was found to be expressed in the epithelium of many cancerous and non-cancerous tissues throughout the body but protein characterization and functional analysis have not yet been performed. This study focused on the biochemical characterization of OATP5A1 using Xenopus laevis oocytes and Flp-In T-REx-HeLa cells providing evidence regarding a possible OATP5A1 function. SLCO5A1 is highly expressed in mature dendritic cells compared to immature dendritic cells (∼6.5-fold) and SLCO5A1 expression correlates with the differentiation status of primary blood cells. A core- and complex- N-glycosylated polypeptide monomer of ∼105 kDa and ∼130 kDa could be localized in intracellular membranes and on the plasma membrane, respectively. Inducible expression of SLCO5A1 in HeLa cells led to an inhibitory effect of ∼20% after 96 h on cell proliferation. Gene expression profiling with these cells identified immunologically relevant genes (e.g. CCL20) and genes implicated in developmental processes (e.g. TGM2). A single nucleotide polymorphism leading to the exchange of amino acid 33 (L→F) revealed no differences regarding protein expression and function. In conclusion, we provide evidence that OATP5A1 might be a non-classical OATP family member which is involved in biological processes that require the reorganization of the cell shape, such as differentiation and migration.
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spelling pubmed-38697812013-12-27 Characterization of SLCO5A1/OATP5A1, a Solute Carrier Transport Protein with Non-Classical Function Sebastian, Katrin Detro-Dassen, Silvia Rinis, Natalie Fahrenkamp, Dirk Müller-Newen, Gerhard Merk, Hans F. Schmalzing, Günther Zwadlo-Klarwasser, Gabriele Baron, Jens Malte PLoS One Research Article Organic anion transporting polypeptides (OATP/SLCO) have been identified to mediate the uptake of a broad range of mainly amphipathic molecules. Human OATP5A1 was found to be expressed in the epithelium of many cancerous and non-cancerous tissues throughout the body but protein characterization and functional analysis have not yet been performed. This study focused on the biochemical characterization of OATP5A1 using Xenopus laevis oocytes and Flp-In T-REx-HeLa cells providing evidence regarding a possible OATP5A1 function. SLCO5A1 is highly expressed in mature dendritic cells compared to immature dendritic cells (∼6.5-fold) and SLCO5A1 expression correlates with the differentiation status of primary blood cells. A core- and complex- N-glycosylated polypeptide monomer of ∼105 kDa and ∼130 kDa could be localized in intracellular membranes and on the plasma membrane, respectively. Inducible expression of SLCO5A1 in HeLa cells led to an inhibitory effect of ∼20% after 96 h on cell proliferation. Gene expression profiling with these cells identified immunologically relevant genes (e.g. CCL20) and genes implicated in developmental processes (e.g. TGM2). A single nucleotide polymorphism leading to the exchange of amino acid 33 (L→F) revealed no differences regarding protein expression and function. In conclusion, we provide evidence that OATP5A1 might be a non-classical OATP family member which is involved in biological processes that require the reorganization of the cell shape, such as differentiation and migration. Public Library of Science 2013-12-20 /pmc/articles/PMC3869781/ /pubmed/24376674 http://dx.doi.org/10.1371/journal.pone.0083257 Text en © 2013 Sebastian et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sebastian, Katrin
Detro-Dassen, Silvia
Rinis, Natalie
Fahrenkamp, Dirk
Müller-Newen, Gerhard
Merk, Hans F.
Schmalzing, Günther
Zwadlo-Klarwasser, Gabriele
Baron, Jens Malte
Characterization of SLCO5A1/OATP5A1, a Solute Carrier Transport Protein with Non-Classical Function
title Characterization of SLCO5A1/OATP5A1, a Solute Carrier Transport Protein with Non-Classical Function
title_full Characterization of SLCO5A1/OATP5A1, a Solute Carrier Transport Protein with Non-Classical Function
title_fullStr Characterization of SLCO5A1/OATP5A1, a Solute Carrier Transport Protein with Non-Classical Function
title_full_unstemmed Characterization of SLCO5A1/OATP5A1, a Solute Carrier Transport Protein with Non-Classical Function
title_short Characterization of SLCO5A1/OATP5A1, a Solute Carrier Transport Protein with Non-Classical Function
title_sort characterization of slco5a1/oatp5a1, a solute carrier transport protein with non-classical function
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3869781/
https://www.ncbi.nlm.nih.gov/pubmed/24376674
http://dx.doi.org/10.1371/journal.pone.0083257
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