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IFITM3 Reduces Retroviral Envelope Abundance and Function and Is Counteracted by glycoGag

Interferon-induced transmembrane (IFITM) proteins are encoded by many vertebrate species and exhibit antiviral activities against a wide range of viruses. IFITM3, when present in virus-producing cells, reduces the fusion potential of HIV-1 virions, but the mechanism is poorly understood. To define t...

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Autores principales: Ahi, Yadvinder S., Yimer, Diborah, Shi, Guoli, Majdoul, Saliha, Rahman, Kazi, Rein, Alan, Compton, Alex A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6974572/
https://www.ncbi.nlm.nih.gov/pubmed/31964738
http://dx.doi.org/10.1128/mBio.03088-19
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author Ahi, Yadvinder S.
Yimer, Diborah
Shi, Guoli
Majdoul, Saliha
Rahman, Kazi
Rein, Alan
Compton, Alex A.
author_facet Ahi, Yadvinder S.
Yimer, Diborah
Shi, Guoli
Majdoul, Saliha
Rahman, Kazi
Rein, Alan
Compton, Alex A.
author_sort Ahi, Yadvinder S.
collection PubMed
description Interferon-induced transmembrane (IFITM) proteins are encoded by many vertebrate species and exhibit antiviral activities against a wide range of viruses. IFITM3, when present in virus-producing cells, reduces the fusion potential of HIV-1 virions, but the mechanism is poorly understood. To define the breadth and mechanistic basis for the antiviral activity of IFITM3, we took advantage of a murine leukemia virus (MLV)-based pseudotyping system. By carefully controlling amounts of IFITM3 and envelope protein (Env) in virus-producing cells, we found that IFITM3 potently inhibits MLV infectivity when Env levels are limiting. Loss of infectivity was associated with defective proteolytic processing of Env and lysosomal degradation of the Env precursor. Ecotropic and xenotropic variants of MLV Env, as well as HIV-1 Env and vesicular stomatitis virus glycoprotein (VSV-G), are sensitive to IFITM3, whereas Ebola glycoprotein is resistant, suggesting that IFITM3 selectively inactivates certain viral glycoproteins. Furthermore, endogenous IFITM3 in human and murine cells negatively regulates MLV Env abundance. However, we found that the negative impact of IFITM3 on virion infectivity is greater than its impact on decreasing Env incorporation, suggesting that IFITM3 may impair Env function, as well as reduce the amount of Env in virions. Finally, we demonstrate that loss of virion infectivity mediated by IFITM3 is reversed by the expression of glycoGag, a murine retrovirus accessory protein previously shown to antagonize the antiviral activity of SERINC proteins. Overall, we show that IFITM3 impairs virion infectivity by regulating Env quantity and function but that enhanced Env expression and glycoGag confer viral resistance to IFITM3.
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spelling pubmed-69745722020-02-04 IFITM3 Reduces Retroviral Envelope Abundance and Function and Is Counteracted by glycoGag Ahi, Yadvinder S. Yimer, Diborah Shi, Guoli Majdoul, Saliha Rahman, Kazi Rein, Alan Compton, Alex A. mBio Research Article Interferon-induced transmembrane (IFITM) proteins are encoded by many vertebrate species and exhibit antiviral activities against a wide range of viruses. IFITM3, when present in virus-producing cells, reduces the fusion potential of HIV-1 virions, but the mechanism is poorly understood. To define the breadth and mechanistic basis for the antiviral activity of IFITM3, we took advantage of a murine leukemia virus (MLV)-based pseudotyping system. By carefully controlling amounts of IFITM3 and envelope protein (Env) in virus-producing cells, we found that IFITM3 potently inhibits MLV infectivity when Env levels are limiting. Loss of infectivity was associated with defective proteolytic processing of Env and lysosomal degradation of the Env precursor. Ecotropic and xenotropic variants of MLV Env, as well as HIV-1 Env and vesicular stomatitis virus glycoprotein (VSV-G), are sensitive to IFITM3, whereas Ebola glycoprotein is resistant, suggesting that IFITM3 selectively inactivates certain viral glycoproteins. Furthermore, endogenous IFITM3 in human and murine cells negatively regulates MLV Env abundance. However, we found that the negative impact of IFITM3 on virion infectivity is greater than its impact on decreasing Env incorporation, suggesting that IFITM3 may impair Env function, as well as reduce the amount of Env in virions. Finally, we demonstrate that loss of virion infectivity mediated by IFITM3 is reversed by the expression of glycoGag, a murine retrovirus accessory protein previously shown to antagonize the antiviral activity of SERINC proteins. Overall, we show that IFITM3 impairs virion infectivity by regulating Env quantity and function but that enhanced Env expression and glycoGag confer viral resistance to IFITM3. American Society for Microbiology 2020-01-21 /pmc/articles/PMC6974572/ /pubmed/31964738 http://dx.doi.org/10.1128/mBio.03088-19 Text en https://doi.org/10.1128/AuthorWarrantyLicense.v1 This is a work of the U.S. Government and is not subject to copyright protection in the United States. Foreign copyrights may apply.
spellingShingle Research Article
Ahi, Yadvinder S.
Yimer, Diborah
Shi, Guoli
Majdoul, Saliha
Rahman, Kazi
Rein, Alan
Compton, Alex A.
IFITM3 Reduces Retroviral Envelope Abundance and Function and Is Counteracted by glycoGag
title IFITM3 Reduces Retroviral Envelope Abundance and Function and Is Counteracted by glycoGag
title_full IFITM3 Reduces Retroviral Envelope Abundance and Function and Is Counteracted by glycoGag
title_fullStr IFITM3 Reduces Retroviral Envelope Abundance and Function and Is Counteracted by glycoGag
title_full_unstemmed IFITM3 Reduces Retroviral Envelope Abundance and Function and Is Counteracted by glycoGag
title_short IFITM3 Reduces Retroviral Envelope Abundance and Function and Is Counteracted by glycoGag
title_sort ifitm3 reduces retroviral envelope abundance and function and is counteracted by glycogag
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6974572/
https://www.ncbi.nlm.nih.gov/pubmed/31964738
http://dx.doi.org/10.1128/mBio.03088-19
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