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CD81 Receptor Regions outside the Large Extracellular Loop Determine Hepatitis C Virus Entry into Hepatoma Cells

Hepatitis C virus (HCV) enters human hepatocytes using four essential entry factors, one of which is human CD81 (hCD81). The tetraspanin hCD81 contains a large extracellular loop (LEL), which interacts with the E2 glycoprotein of HCV. The role of the non-LEL regions of hCD81 (intracellular tails, fo...

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Autores principales: Banse, Pia, Moeller, Rebecca, Bruening, Janina, Lasswitz, Lisa, Kahl, Sina, Khan, Abdul G., Marcotrigiano, Joseph, Pietschmann, Thomas, Gerold, Gisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5923501/
https://www.ncbi.nlm.nih.gov/pubmed/29677132
http://dx.doi.org/10.3390/v10040207
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author Banse, Pia
Moeller, Rebecca
Bruening, Janina
Lasswitz, Lisa
Kahl, Sina
Khan, Abdul G.
Marcotrigiano, Joseph
Pietschmann, Thomas
Gerold, Gisa
author_facet Banse, Pia
Moeller, Rebecca
Bruening, Janina
Lasswitz, Lisa
Kahl, Sina
Khan, Abdul G.
Marcotrigiano, Joseph
Pietschmann, Thomas
Gerold, Gisa
author_sort Banse, Pia
collection PubMed
description Hepatitis C virus (HCV) enters human hepatocytes using four essential entry factors, one of which is human CD81 (hCD81). The tetraspanin hCD81 contains a large extracellular loop (LEL), which interacts with the E2 glycoprotein of HCV. The role of the non-LEL regions of hCD81 (intracellular tails, four transmembrane domains, small extracellular loop and intracellular loop) is poorly understood. Here, we studied the contribution of these domains to HCV susceptibility of hepatoma cells by generating chimeras of related tetraspanins with the hCD81 LEL. Our results show that non-LEL regions in addition to the LEL determine susceptibility of cells to HCV. While closely related tetraspanins (X. tropicalis CD81 and D. rerio CD81) functionally complement hCD81 non-LEL regions, distantly related tetraspanins (C. elegans TSP9 amd D. melanogaster TSP96F) do not and tetraspanins with intermediate homology (hCD9) show an intermediate phenotype. Tetraspanin homology and susceptibility to HCV correlate positively. For some chimeras, infectivity correlates with surface expression. In contrast, the hCD9 chimera is fully surface expressed, binds HCV E2 glycoprotein but is impaired in HCV receptor function. We demonstrate that a cholesterol-coordinating glutamate residue in CD81, which hCD9 lacks, promotes HCV infection. This work highlights the hCD81 non-LEL regions as additional HCV susceptibility-determining factors.
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spelling pubmed-59235012018-05-03 CD81 Receptor Regions outside the Large Extracellular Loop Determine Hepatitis C Virus Entry into Hepatoma Cells Banse, Pia Moeller, Rebecca Bruening, Janina Lasswitz, Lisa Kahl, Sina Khan, Abdul G. Marcotrigiano, Joseph Pietschmann, Thomas Gerold, Gisa Viruses Article Hepatitis C virus (HCV) enters human hepatocytes using four essential entry factors, one of which is human CD81 (hCD81). The tetraspanin hCD81 contains a large extracellular loop (LEL), which interacts with the E2 glycoprotein of HCV. The role of the non-LEL regions of hCD81 (intracellular tails, four transmembrane domains, small extracellular loop and intracellular loop) is poorly understood. Here, we studied the contribution of these domains to HCV susceptibility of hepatoma cells by generating chimeras of related tetraspanins with the hCD81 LEL. Our results show that non-LEL regions in addition to the LEL determine susceptibility of cells to HCV. While closely related tetraspanins (X. tropicalis CD81 and D. rerio CD81) functionally complement hCD81 non-LEL regions, distantly related tetraspanins (C. elegans TSP9 amd D. melanogaster TSP96F) do not and tetraspanins with intermediate homology (hCD9) show an intermediate phenotype. Tetraspanin homology and susceptibility to HCV correlate positively. For some chimeras, infectivity correlates with surface expression. In contrast, the hCD9 chimera is fully surface expressed, binds HCV E2 glycoprotein but is impaired in HCV receptor function. We demonstrate that a cholesterol-coordinating glutamate residue in CD81, which hCD9 lacks, promotes HCV infection. This work highlights the hCD81 non-LEL regions as additional HCV susceptibility-determining factors. MDPI 2018-04-20 /pmc/articles/PMC5923501/ /pubmed/29677132 http://dx.doi.org/10.3390/v10040207 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
Banse, Pia
Moeller, Rebecca
Bruening, Janina
Lasswitz, Lisa
Kahl, Sina
Khan, Abdul G.
Marcotrigiano, Joseph
Pietschmann, Thomas
Gerold, Gisa
CD81 Receptor Regions outside the Large Extracellular Loop Determine Hepatitis C Virus Entry into Hepatoma Cells
title CD81 Receptor Regions outside the Large Extracellular Loop Determine Hepatitis C Virus Entry into Hepatoma Cells
title_full CD81 Receptor Regions outside the Large Extracellular Loop Determine Hepatitis C Virus Entry into Hepatoma Cells
title_fullStr CD81 Receptor Regions outside the Large Extracellular Loop Determine Hepatitis C Virus Entry into Hepatoma Cells
title_full_unstemmed CD81 Receptor Regions outside the Large Extracellular Loop Determine Hepatitis C Virus Entry into Hepatoma Cells
title_short CD81 Receptor Regions outside the Large Extracellular Loop Determine Hepatitis C Virus Entry into Hepatoma Cells
title_sort cd81 receptor regions outside the large extracellular loop determine hepatitis c virus entry into hepatoma cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5923501/
https://www.ncbi.nlm.nih.gov/pubmed/29677132
http://dx.doi.org/10.3390/v10040207
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