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BST2/Tetherin Overexpression Modulates Morbillivirus Glycoprotein Production to Inhibit Cell–Cell Fusion

The measles virus (MeV), a member of the genus Morbillivirus, is an established pathogen of humans. A key feature of morbilliviruses is their ability to spread by virus–cell and cell–cell fusion. The latter process, which leads to syncytia formation in vitro and in vivo, is driven by the viral fusio...

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Autores principales: Kelly, James T., Human, Stacey, Alderman, Joseph, Jobe, Fatoumatta, Logan, Leanne, Rix, Thomas, Gonçalves-Carneiro, Daniel, Leung, Corwin, Thakur, Nazia, Birch, Jamie, Bailey, Dalan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6723339/
https://www.ncbi.nlm.nih.gov/pubmed/31366072
http://dx.doi.org/10.3390/v11080692
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author Kelly, James T.
Human, Stacey
Alderman, Joseph
Jobe, Fatoumatta
Logan, Leanne
Rix, Thomas
Gonçalves-Carneiro, Daniel
Leung, Corwin
Thakur, Nazia
Birch, Jamie
Bailey, Dalan
author_facet Kelly, James T.
Human, Stacey
Alderman, Joseph
Jobe, Fatoumatta
Logan, Leanne
Rix, Thomas
Gonçalves-Carneiro, Daniel
Leung, Corwin
Thakur, Nazia
Birch, Jamie
Bailey, Dalan
author_sort Kelly, James T.
collection PubMed
description The measles virus (MeV), a member of the genus Morbillivirus, is an established pathogen of humans. A key feature of morbilliviruses is their ability to spread by virus–cell and cell–cell fusion. The latter process, which leads to syncytia formation in vitro and in vivo, is driven by the viral fusion (F) and haemagglutinin (H) glycoproteins. In this study, we demonstrate that MeV glycoproteins are sensitive to inhibition by bone marrow stromal antigen 2 (BST2/Tetherin/CD317) proteins. BST2 overexpression causes a large reduction in MeV syncytia expansion. Using quantitative cell–cell fusion assays, immunolabeling, and biochemistry we further demonstrate that ectopically expressed BST2 directly inhibits MeV cell–cell fusion. This restriction is mediated by the targeting of the MeV H glycoprotein, but not other MeV proteins. Using truncation mutants, we further establish that the C-terminal glycosyl-phosphatidylinositol (GPI) anchor of BST2 is required for the restriction of MeV replication in vitro and cell–cell fusion. By extending our study to the ruminant morbillivirus peste des petits ruminants virus (PPRV) and its natural host, sheep, we also confirm this is a broad and cross-species specific phenotype.
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spelling pubmed-67233392019-09-10 BST2/Tetherin Overexpression Modulates Morbillivirus Glycoprotein Production to Inhibit Cell–Cell Fusion Kelly, James T. Human, Stacey Alderman, Joseph Jobe, Fatoumatta Logan, Leanne Rix, Thomas Gonçalves-Carneiro, Daniel Leung, Corwin Thakur, Nazia Birch, Jamie Bailey, Dalan Viruses Article The measles virus (MeV), a member of the genus Morbillivirus, is an established pathogen of humans. A key feature of morbilliviruses is their ability to spread by virus–cell and cell–cell fusion. The latter process, which leads to syncytia formation in vitro and in vivo, is driven by the viral fusion (F) and haemagglutinin (H) glycoproteins. In this study, we demonstrate that MeV glycoproteins are sensitive to inhibition by bone marrow stromal antigen 2 (BST2/Tetherin/CD317) proteins. BST2 overexpression causes a large reduction in MeV syncytia expansion. Using quantitative cell–cell fusion assays, immunolabeling, and biochemistry we further demonstrate that ectopically expressed BST2 directly inhibits MeV cell–cell fusion. This restriction is mediated by the targeting of the MeV H glycoprotein, but not other MeV proteins. Using truncation mutants, we further establish that the C-terminal glycosyl-phosphatidylinositol (GPI) anchor of BST2 is required for the restriction of MeV replication in vitro and cell–cell fusion. By extending our study to the ruminant morbillivirus peste des petits ruminants virus (PPRV) and its natural host, sheep, we also confirm this is a broad and cross-species specific phenotype. MDPI 2019-07-30 /pmc/articles/PMC6723339/ /pubmed/31366072 http://dx.doi.org/10.3390/v11080692 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
Kelly, James T.
Human, Stacey
Alderman, Joseph
Jobe, Fatoumatta
Logan, Leanne
Rix, Thomas
Gonçalves-Carneiro, Daniel
Leung, Corwin
Thakur, Nazia
Birch, Jamie
Bailey, Dalan
BST2/Tetherin Overexpression Modulates Morbillivirus Glycoprotein Production to Inhibit Cell–Cell Fusion
title BST2/Tetherin Overexpression Modulates Morbillivirus Glycoprotein Production to Inhibit Cell–Cell Fusion
title_full BST2/Tetherin Overexpression Modulates Morbillivirus Glycoprotein Production to Inhibit Cell–Cell Fusion
title_fullStr BST2/Tetherin Overexpression Modulates Morbillivirus Glycoprotein Production to Inhibit Cell–Cell Fusion
title_full_unstemmed BST2/Tetherin Overexpression Modulates Morbillivirus Glycoprotein Production to Inhibit Cell–Cell Fusion
title_short BST2/Tetherin Overexpression Modulates Morbillivirus Glycoprotein Production to Inhibit Cell–Cell Fusion
title_sort bst2/tetherin overexpression modulates morbillivirus glycoprotein production to inhibit cell–cell fusion
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6723339/
https://www.ncbi.nlm.nih.gov/pubmed/31366072
http://dx.doi.org/10.3390/v11080692
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