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Mechanism of Viral Glycoprotein Targeting by Membrane-Associated RING-CH Proteins

An emerging class of cellular inhibitory proteins has been identified that targets viral glycoproteins. These include the membrane-associated RING-CH (MARCH) family of E3 ubiquitin ligases that, among other functions, downregulate cell surface proteins involved in adaptive immunity. The RING-CH doma...

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Autores principales: Lun, Cheng Man, Waheed, Abdul A., Majadly, Ahlam, Powell, Nicole, Freed, Eric O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8092221/
https://www.ncbi.nlm.nih.gov/pubmed/33727347
http://dx.doi.org/10.1128/mBio.00219-21
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author Lun, Cheng Man
Waheed, Abdul A.
Majadly, Ahlam
Powell, Nicole
Freed, Eric O.
author_facet Lun, Cheng Man
Waheed, Abdul A.
Majadly, Ahlam
Powell, Nicole
Freed, Eric O.
author_sort Lun, Cheng Man
collection PubMed
description An emerging class of cellular inhibitory proteins has been identified that targets viral glycoproteins. These include the membrane-associated RING-CH (MARCH) family of E3 ubiquitin ligases that, among other functions, downregulate cell surface proteins involved in adaptive immunity. The RING-CH domain of MARCH proteins is thought to function by catalyzing the ubiquitination of the cytoplasmic tails (CTs) of target proteins, leading to their degradation. MARCH proteins have recently been reported to target retroviral envelope glycoproteins (Env) and vesicular stomatitis virus G glycoprotein (VSV-G). However, the mechanism of antiviral activity remains poorly defined. Here we show that MARCH8 antagonizes the full-length forms of HIV-1 Env, VSV-G, Ebola virus glycoprotein (EboV-GP), and the spike (S) protein of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), thereby impairing the infectivity of virions pseudotyped with these viral glycoproteins. This MARCH8-mediated targeting of viral glycoproteins requires the E3 ubiquitin ligase activity of the RING-CH domain. We observe that MARCH8 protein antagonism of VSV-G is CT dependent. In contrast, MARCH8-mediated targeting of HIV-1 Env, EboV-GP, and SARS-CoV-2 S protein by MARCH8 does not require the CT, suggesting a novel mechanism of MARCH-mediated antagonism of these viral glycoproteins. Confocal microscopy data demonstrate that MARCH8 traps the viral glycoproteins in an intracellular compartment. We observe that the endogenous expression of MARCH8 in several relevant human cell types is rapidly inducible by type I interferon. These results help to inform the mechanism by which MARCH proteins exert their antiviral activity and provide insights into the role of cellular inhibitory factors in antagonizing the biogenesis, trafficking, and virion incorporation of viral glycoproteins.
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spelling pubmed-80922212021-05-04 Mechanism of Viral Glycoprotein Targeting by Membrane-Associated RING-CH Proteins Lun, Cheng Man Waheed, Abdul A. Majadly, Ahlam Powell, Nicole Freed, Eric O. mBio Research Article An emerging class of cellular inhibitory proteins has been identified that targets viral glycoproteins. These include the membrane-associated RING-CH (MARCH) family of E3 ubiquitin ligases that, among other functions, downregulate cell surface proteins involved in adaptive immunity. The RING-CH domain of MARCH proteins is thought to function by catalyzing the ubiquitination of the cytoplasmic tails (CTs) of target proteins, leading to their degradation. MARCH proteins have recently been reported to target retroviral envelope glycoproteins (Env) and vesicular stomatitis virus G glycoprotein (VSV-G). However, the mechanism of antiviral activity remains poorly defined. Here we show that MARCH8 antagonizes the full-length forms of HIV-1 Env, VSV-G, Ebola virus glycoprotein (EboV-GP), and the spike (S) protein of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), thereby impairing the infectivity of virions pseudotyped with these viral glycoproteins. This MARCH8-mediated targeting of viral glycoproteins requires the E3 ubiquitin ligase activity of the RING-CH domain. We observe that MARCH8 protein antagonism of VSV-G is CT dependent. In contrast, MARCH8-mediated targeting of HIV-1 Env, EboV-GP, and SARS-CoV-2 S protein by MARCH8 does not require the CT, suggesting a novel mechanism of MARCH-mediated antagonism of these viral glycoproteins. Confocal microscopy data demonstrate that MARCH8 traps the viral glycoproteins in an intracellular compartment. We observe that the endogenous expression of MARCH8 in several relevant human cell types is rapidly inducible by type I interferon. These results help to inform the mechanism by which MARCH proteins exert their antiviral activity and provide insights into the role of cellular inhibitory factors in antagonizing the biogenesis, trafficking, and virion incorporation of viral glycoproteins. American Society for Microbiology 2021-03-16 /pmc/articles/PMC8092221/ /pubmed/33727347 http://dx.doi.org/10.1128/mBio.00219-21 Text en https://doi.org/10.1128/AuthorWarrantyLicense.v1This 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
Lun, Cheng Man
Waheed, Abdul A.
Majadly, Ahlam
Powell, Nicole
Freed, Eric O.
Mechanism of Viral Glycoprotein Targeting by Membrane-Associated RING-CH Proteins
title Mechanism of Viral Glycoprotein Targeting by Membrane-Associated RING-CH Proteins
title_full Mechanism of Viral Glycoprotein Targeting by Membrane-Associated RING-CH Proteins
title_fullStr Mechanism of Viral Glycoprotein Targeting by Membrane-Associated RING-CH Proteins
title_full_unstemmed Mechanism of Viral Glycoprotein Targeting by Membrane-Associated RING-CH Proteins
title_short Mechanism of Viral Glycoprotein Targeting by Membrane-Associated RING-CH Proteins
title_sort mechanism of viral glycoprotein targeting by membrane-associated ring-ch proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8092221/
https://www.ncbi.nlm.nih.gov/pubmed/33727347
http://dx.doi.org/10.1128/mBio.00219-21
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