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Induction of ATP Release, PPIX Transport, and Cholesterol Uptake by Human Red Blood Cells Using a New Family of TSPO Ligands

Two main isoforms of the Translocator Protein (TSPO) have been identified. TSPO1 is ubiquitous and is mainly present at the outer mitochondrial membrane of most eukaryotic cells, whereas, TSPO2 is specific to the erythroid lineage, located at the plasma membrane, the nucleus, and the endoplasmic ret...

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Autores principales: Marginedas-Freixa, Irene, Alvarez, Cora L., Moras, Martina, Hattab, Claude, Bouyer, Guillaume, Chene, Arnaud, Lefevre, Sophie D., Le Van Kim, Caroline, Bihel, Frederic, Schwarzbaum, Pablo J., Ostuni, Mariano A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6213633/
https://www.ncbi.nlm.nih.gov/pubmed/30308949
http://dx.doi.org/10.3390/ijms19103098
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author Marginedas-Freixa, Irene
Alvarez, Cora L.
Moras, Martina
Hattab, Claude
Bouyer, Guillaume
Chene, Arnaud
Lefevre, Sophie D.
Le Van Kim, Caroline
Bihel, Frederic
Schwarzbaum, Pablo J.
Ostuni, Mariano A.
author_facet Marginedas-Freixa, Irene
Alvarez, Cora L.
Moras, Martina
Hattab, Claude
Bouyer, Guillaume
Chene, Arnaud
Lefevre, Sophie D.
Le Van Kim, Caroline
Bihel, Frederic
Schwarzbaum, Pablo J.
Ostuni, Mariano A.
author_sort Marginedas-Freixa, Irene
collection PubMed
description Two main isoforms of the Translocator Protein (TSPO) have been identified. TSPO1 is ubiquitous and is mainly present at the outer mitochondrial membrane of most eukaryotic cells, whereas, TSPO2 is specific to the erythroid lineage, located at the plasma membrane, the nucleus, and the endoplasmic reticulum. The design of specific tools is necessary to determine the molecular associations and functions of TSPO, which remain controversial nowadays. We recently demonstrated that TSPO2 is involved in a supramolecular complex of the erythrocyte membrane, where micromolar doses of the classical TSPO ligands induce ATP release and zinc protoporphyrin (ZnPPIX) transport. In this work, three newly-designed ligands (NCS1016, NCS1018, and NCS1026) were assessed for their ability to modulate the functions of various erythrocyte’s and compare them to the TSPO classical ligands. The three new ligands were effective in reducing intraerythrocytic Plasmodium growth, without compromising erythrocyte survival. While NCS1016 and NCS1018 were the most effective ligands in delaying sorbitol-induced hemolysis, NCS1016 induced the highest uptake of ZnPPIX and NCS1026 was the only ligand inhibiting the cholesterol uptake. Differential effects of ligands are probably due, not only, to ligand features, but also to the dynamic interaction of TSPO with various partners at the cell membrane. Further studies are necessary to fully understand the mechanisms of the TSPO’s complex activation.
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spelling pubmed-62136332018-11-14 Induction of ATP Release, PPIX Transport, and Cholesterol Uptake by Human Red Blood Cells Using a New Family of TSPO Ligands Marginedas-Freixa, Irene Alvarez, Cora L. Moras, Martina Hattab, Claude Bouyer, Guillaume Chene, Arnaud Lefevre, Sophie D. Le Van Kim, Caroline Bihel, Frederic Schwarzbaum, Pablo J. Ostuni, Mariano A. Int J Mol Sci Article Two main isoforms of the Translocator Protein (TSPO) have been identified. TSPO1 is ubiquitous and is mainly present at the outer mitochondrial membrane of most eukaryotic cells, whereas, TSPO2 is specific to the erythroid lineage, located at the plasma membrane, the nucleus, and the endoplasmic reticulum. The design of specific tools is necessary to determine the molecular associations and functions of TSPO, which remain controversial nowadays. We recently demonstrated that TSPO2 is involved in a supramolecular complex of the erythrocyte membrane, where micromolar doses of the classical TSPO ligands induce ATP release and zinc protoporphyrin (ZnPPIX) transport. In this work, three newly-designed ligands (NCS1016, NCS1018, and NCS1026) were assessed for their ability to modulate the functions of various erythrocyte’s and compare them to the TSPO classical ligands. The three new ligands were effective in reducing intraerythrocytic Plasmodium growth, without compromising erythrocyte survival. While NCS1016 and NCS1018 were the most effective ligands in delaying sorbitol-induced hemolysis, NCS1016 induced the highest uptake of ZnPPIX and NCS1026 was the only ligand inhibiting the cholesterol uptake. Differential effects of ligands are probably due, not only, to ligand features, but also to the dynamic interaction of TSPO with various partners at the cell membrane. Further studies are necessary to fully understand the mechanisms of the TSPO’s complex activation. MDPI 2018-10-10 /pmc/articles/PMC6213633/ /pubmed/30308949 http://dx.doi.org/10.3390/ijms19103098 Text en © 2018 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
Marginedas-Freixa, Irene
Alvarez, Cora L.
Moras, Martina
Hattab, Claude
Bouyer, Guillaume
Chene, Arnaud
Lefevre, Sophie D.
Le Van Kim, Caroline
Bihel, Frederic
Schwarzbaum, Pablo J.
Ostuni, Mariano A.
Induction of ATP Release, PPIX Transport, and Cholesterol Uptake by Human Red Blood Cells Using a New Family of TSPO Ligands
title Induction of ATP Release, PPIX Transport, and Cholesterol Uptake by Human Red Blood Cells Using a New Family of TSPO Ligands
title_full Induction of ATP Release, PPIX Transport, and Cholesterol Uptake by Human Red Blood Cells Using a New Family of TSPO Ligands
title_fullStr Induction of ATP Release, PPIX Transport, and Cholesterol Uptake by Human Red Blood Cells Using a New Family of TSPO Ligands
title_full_unstemmed Induction of ATP Release, PPIX Transport, and Cholesterol Uptake by Human Red Blood Cells Using a New Family of TSPO Ligands
title_short Induction of ATP Release, PPIX Transport, and Cholesterol Uptake by Human Red Blood Cells Using a New Family of TSPO Ligands
title_sort induction of atp release, ppix transport, and cholesterol uptake by human red blood cells using a new family of tspo ligands
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6213633/
https://www.ncbi.nlm.nih.gov/pubmed/30308949
http://dx.doi.org/10.3390/ijms19103098
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