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Rhinovirus 3C Protease Facilitates Specific Nucleoporin Cleavage and Mislocalisation of Nuclear Proteins in Infected Host Cells

Human Rhinovirus (HRV) infection results in shut down of essential cellular processes, in part through disruption of nucleocytoplasmic transport by cleavage of the nucleoporin proteins (Nups) that make up the host cell nuclear pore. Although the HRV genome encodes two proteases (2A and 3C) able to c...

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Autores principales: Walker, Erin J., Younessi, Parisa, Fulcher, Alex J., McCuaig, Robert, Thomas, Belinda J., Bardin, Philip G., Jans, David A., Ghildyal, Reena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3737158/
https://www.ncbi.nlm.nih.gov/pubmed/23951130
http://dx.doi.org/10.1371/journal.pone.0071316
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author Walker, Erin J.
Younessi, Parisa
Fulcher, Alex J.
McCuaig, Robert
Thomas, Belinda J.
Bardin, Philip G.
Jans, David A.
Ghildyal, Reena
author_facet Walker, Erin J.
Younessi, Parisa
Fulcher, Alex J.
McCuaig, Robert
Thomas, Belinda J.
Bardin, Philip G.
Jans, David A.
Ghildyal, Reena
author_sort Walker, Erin J.
collection PubMed
description Human Rhinovirus (HRV) infection results in shut down of essential cellular processes, in part through disruption of nucleocytoplasmic transport by cleavage of the nucleoporin proteins (Nups) that make up the host cell nuclear pore. Although the HRV genome encodes two proteases (2A and 3C) able to cleave host proteins such as Nup62, little is known regarding the specific contribution of each. Here we use transfected as well as HRV-infected cells to establish for the first time that 3C protease is most likely the mediator of cleavage of Nup153 during HRV infection, while Nup62 and Nup98 are likely to be targets of HRV2A protease. HRV16 3C protease was also able to elicit changes in the appearance and distribution of the nuclear speckle protein SC35 in transfected cells, implicating it as a key mediator of the mislocalisation of SC35 in HRV16-infected cells. In addition, 3C protease activity led to the redistribution of the nucleolin protein out of the nucleolus, but did not affect nuclear localisation of hnRNP proteins, implying that complete disruption of nucleocytoplasmic transport leading to relocalisation of hnRNP proteins from the nucleus to the cytoplasm in HRV-infected cells almost certainly requires 2A in addition to 3C protease. Thus, a specific role for HRV 3C protease in cleavage and mislocalisation of host cell nuclear proteins, in concert with 2A, is implicated for the first time in HRV pathogenesis.
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spelling pubmed-37371582013-08-15 Rhinovirus 3C Protease Facilitates Specific Nucleoporin Cleavage and Mislocalisation of Nuclear Proteins in Infected Host Cells Walker, Erin J. Younessi, Parisa Fulcher, Alex J. McCuaig, Robert Thomas, Belinda J. Bardin, Philip G. Jans, David A. Ghildyal, Reena PLoS One Research Article Human Rhinovirus (HRV) infection results in shut down of essential cellular processes, in part through disruption of nucleocytoplasmic transport by cleavage of the nucleoporin proteins (Nups) that make up the host cell nuclear pore. Although the HRV genome encodes two proteases (2A and 3C) able to cleave host proteins such as Nup62, little is known regarding the specific contribution of each. Here we use transfected as well as HRV-infected cells to establish for the first time that 3C protease is most likely the mediator of cleavage of Nup153 during HRV infection, while Nup62 and Nup98 are likely to be targets of HRV2A protease. HRV16 3C protease was also able to elicit changes in the appearance and distribution of the nuclear speckle protein SC35 in transfected cells, implicating it as a key mediator of the mislocalisation of SC35 in HRV16-infected cells. In addition, 3C protease activity led to the redistribution of the nucleolin protein out of the nucleolus, but did not affect nuclear localisation of hnRNP proteins, implying that complete disruption of nucleocytoplasmic transport leading to relocalisation of hnRNP proteins from the nucleus to the cytoplasm in HRV-infected cells almost certainly requires 2A in addition to 3C protease. Thus, a specific role for HRV 3C protease in cleavage and mislocalisation of host cell nuclear proteins, in concert with 2A, is implicated for the first time in HRV pathogenesis. Public Library of Science 2013-08-07 /pmc/articles/PMC3737158/ /pubmed/23951130 http://dx.doi.org/10.1371/journal.pone.0071316 Text en © 2013 Walker 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
Walker, Erin J.
Younessi, Parisa
Fulcher, Alex J.
McCuaig, Robert
Thomas, Belinda J.
Bardin, Philip G.
Jans, David A.
Ghildyal, Reena
Rhinovirus 3C Protease Facilitates Specific Nucleoporin Cleavage and Mislocalisation of Nuclear Proteins in Infected Host Cells
title Rhinovirus 3C Protease Facilitates Specific Nucleoporin Cleavage and Mislocalisation of Nuclear Proteins in Infected Host Cells
title_full Rhinovirus 3C Protease Facilitates Specific Nucleoporin Cleavage and Mislocalisation of Nuclear Proteins in Infected Host Cells
title_fullStr Rhinovirus 3C Protease Facilitates Specific Nucleoporin Cleavage and Mislocalisation of Nuclear Proteins in Infected Host Cells
title_full_unstemmed Rhinovirus 3C Protease Facilitates Specific Nucleoporin Cleavage and Mislocalisation of Nuclear Proteins in Infected Host Cells
title_short Rhinovirus 3C Protease Facilitates Specific Nucleoporin Cleavage and Mislocalisation of Nuclear Proteins in Infected Host Cells
title_sort rhinovirus 3c protease facilitates specific nucleoporin cleavage and mislocalisation of nuclear proteins in infected host cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3737158/
https://www.ncbi.nlm.nih.gov/pubmed/23951130
http://dx.doi.org/10.1371/journal.pone.0071316
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