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Functional Reconstitution into Liposomes of Purified Human RhCG Ammonia Channel

BACKGROUND: Rh glycoproteins (RhAG, RhBG, RhCG) are members of the Amt/Mep/Rh family which facilitate movement of ammonium across plasma membranes. Changes in ammonium transport activity following expression of Rh glycoproteins have been described in different heterologous systems such as yeasts, oo...

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Autores principales: Mouro-Chanteloup, Isabelle, Cochet, Sylvie, Chami, Mohamed, Genetet, Sandrine, Zidi-Yahiaoui, Nedjma, Engel, Andreas, Colin, Yves, Bertrand, Olivier, Ripoche, Pierre
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2812482/
https://www.ncbi.nlm.nih.gov/pubmed/20126667
http://dx.doi.org/10.1371/journal.pone.0008921
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author Mouro-Chanteloup, Isabelle
Cochet, Sylvie
Chami, Mohamed
Genetet, Sandrine
Zidi-Yahiaoui, Nedjma
Engel, Andreas
Colin, Yves
Bertrand, Olivier
Ripoche, Pierre
author_facet Mouro-Chanteloup, Isabelle
Cochet, Sylvie
Chami, Mohamed
Genetet, Sandrine
Zidi-Yahiaoui, Nedjma
Engel, Andreas
Colin, Yves
Bertrand, Olivier
Ripoche, Pierre
author_sort Mouro-Chanteloup, Isabelle
collection PubMed
description BACKGROUND: Rh glycoproteins (RhAG, RhBG, RhCG) are members of the Amt/Mep/Rh family which facilitate movement of ammonium across plasma membranes. Changes in ammonium transport activity following expression of Rh glycoproteins have been described in different heterologous systems such as yeasts, oocytes and eukaryotic cell lines. However, in these complex systems, a potential contribution of endogenous proteins to this function cannot be excluded. To demonstrate that Rh glycoproteins by themselves transport NH(3), human RhCG was purified to homogeneity and reconstituted into liposomes, giving new insights into its channel functional properties. METHODOLOGY/PRINCIPAL FINDINGS: An HA-tag introduced in the second extracellular loop of RhCG was used to purify to homogeneity the HA-tagged RhCG glycoprotein from detergent-solubilized recombinant HEK293E cells. Electron microscopy analysis of negatively stained purified RhCG-HA revealed, after image processing, homogeneous particles of 9 nm diameter with a trimeric protein structure. Reconstitution was performed with sphingomyelin, phosphatidylcholine and phosphatidic acid lipids in the presence of the C(12)E(8) detergent which was subsequently removed by Biobeads. Control of protein incorporation was carried out by freeze-fracture electron microscopy. Particle density in liposomes was a function of the Lipid/Protein ratio. When compared to empty liposomes, ammonium permeability was increased two and three fold in RhCG-proteoliposomes, depending on the Lipid/Protein ratio (1/300 and 1/150, respectively). This strong NH(3) transport was reversibly inhibited by mercuric and copper salts and exhibited a low Arrhenius activation energy. CONCLUSIONS/SIGNIFICANCE: This study allowed the determination of ammonia permeability per RhCG monomer, showing that the apparent Punit(NH3) (around 1×10(−3) µm(3).s(−1)) is close to the permeability measured in HEK293E cells expressing a recombinant human RhCG (1.60×10(−3) µm(3).s(−1)), and in human red blood cells endogenously expressing RhAG (2.18×10(−3) µm(3).s(−1)). The major finding of this study is that RhCG protein is active as an NH(3) channel and that this function does not require any protein partner.
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spelling pubmed-28124822010-02-02 Functional Reconstitution into Liposomes of Purified Human RhCG Ammonia Channel Mouro-Chanteloup, Isabelle Cochet, Sylvie Chami, Mohamed Genetet, Sandrine Zidi-Yahiaoui, Nedjma Engel, Andreas Colin, Yves Bertrand, Olivier Ripoche, Pierre PLoS One Research Article BACKGROUND: Rh glycoproteins (RhAG, RhBG, RhCG) are members of the Amt/Mep/Rh family which facilitate movement of ammonium across plasma membranes. Changes in ammonium transport activity following expression of Rh glycoproteins have been described in different heterologous systems such as yeasts, oocytes and eukaryotic cell lines. However, in these complex systems, a potential contribution of endogenous proteins to this function cannot be excluded. To demonstrate that Rh glycoproteins by themselves transport NH(3), human RhCG was purified to homogeneity and reconstituted into liposomes, giving new insights into its channel functional properties. METHODOLOGY/PRINCIPAL FINDINGS: An HA-tag introduced in the second extracellular loop of RhCG was used to purify to homogeneity the HA-tagged RhCG glycoprotein from detergent-solubilized recombinant HEK293E cells. Electron microscopy analysis of negatively stained purified RhCG-HA revealed, after image processing, homogeneous particles of 9 nm diameter with a trimeric protein structure. Reconstitution was performed with sphingomyelin, phosphatidylcholine and phosphatidic acid lipids in the presence of the C(12)E(8) detergent which was subsequently removed by Biobeads. Control of protein incorporation was carried out by freeze-fracture electron microscopy. Particle density in liposomes was a function of the Lipid/Protein ratio. When compared to empty liposomes, ammonium permeability was increased two and three fold in RhCG-proteoliposomes, depending on the Lipid/Protein ratio (1/300 and 1/150, respectively). This strong NH(3) transport was reversibly inhibited by mercuric and copper salts and exhibited a low Arrhenius activation energy. CONCLUSIONS/SIGNIFICANCE: This study allowed the determination of ammonia permeability per RhCG monomer, showing that the apparent Punit(NH3) (around 1×10(−3) µm(3).s(−1)) is close to the permeability measured in HEK293E cells expressing a recombinant human RhCG (1.60×10(−3) µm(3).s(−1)), and in human red blood cells endogenously expressing RhAG (2.18×10(−3) µm(3).s(−1)). The major finding of this study is that RhCG protein is active as an NH(3) channel and that this function does not require any protein partner. Public Library of Science 2010-01-28 /pmc/articles/PMC2812482/ /pubmed/20126667 http://dx.doi.org/10.1371/journal.pone.0008921 Text en Mouro-Chanteloup 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
Mouro-Chanteloup, Isabelle
Cochet, Sylvie
Chami, Mohamed
Genetet, Sandrine
Zidi-Yahiaoui, Nedjma
Engel, Andreas
Colin, Yves
Bertrand, Olivier
Ripoche, Pierre
Functional Reconstitution into Liposomes of Purified Human RhCG Ammonia Channel
title Functional Reconstitution into Liposomes of Purified Human RhCG Ammonia Channel
title_full Functional Reconstitution into Liposomes of Purified Human RhCG Ammonia Channel
title_fullStr Functional Reconstitution into Liposomes of Purified Human RhCG Ammonia Channel
title_full_unstemmed Functional Reconstitution into Liposomes of Purified Human RhCG Ammonia Channel
title_short Functional Reconstitution into Liposomes of Purified Human RhCG Ammonia Channel
title_sort functional reconstitution into liposomes of purified human rhcg ammonia channel
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2812482/
https://www.ncbi.nlm.nih.gov/pubmed/20126667
http://dx.doi.org/10.1371/journal.pone.0008921
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