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Multiple Poliovirus Proteins Repress Cytoplasmic RNA Granules

We have previously shown that poliovirus (PV) infection induces stress granule (SG) formation early in infection and then inhibits the formation of SG and disperses processing bodies (PBs) by the mid-phase of infection. Loss of SG was linked to cleavage of G3BP1 by viral 3C proteinase (3C(pro)), how...

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Autores principales: Dougherty, Jonathan D., Tsai, Wei-Chih, Lloyd, Richard E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4690851/
https://www.ncbi.nlm.nih.gov/pubmed/26610553
http://dx.doi.org/10.3390/v7122922
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author Dougherty, Jonathan D.
Tsai, Wei-Chih
Lloyd, Richard E.
author_facet Dougherty, Jonathan D.
Tsai, Wei-Chih
Lloyd, Richard E.
author_sort Dougherty, Jonathan D.
collection PubMed
description We have previously shown that poliovirus (PV) infection induces stress granule (SG) formation early in infection and then inhibits the formation of SG and disperses processing bodies (PBs) by the mid-phase of infection. Loss of SG was linked to cleavage of G3BP1 by viral 3C proteinase (3C(pro)), however dispersal of PBs was not strongly linked to cleavage of specific factors by viral proteinases, suggesting other viral proteins may play roles in inhibition of SG or PB formation. Here we have screened all viral proteins for roles in inducing or inhibiting the formation of RNA granules by creating fusions with mCherry and expressing them individually in cells. Expression of viral proteins separately revealed that the capsid region P1, 2A(pro), 3A, 3C(pro), the protease precursor 3CD and 3D polymerase all affect RNA granules to varying extents, whereas 2BC does not. 2A(pro), which cleaves eIF4GI, induced SGs as expected, and entered novel foci containing the SG nucleating protein G3BP1. Of the two forms of G3BP, only G3BP1 is cleaved by a virus proteinase, 3C(pro), whereas G3BP2 is not cleaved by 3C(pro) or 2A(pro). Surprisingly, 3CD, which contains proteinase activity, differentially repressed PBs but not SGs. Further, both 2A(pro) and 3C(pro) expression dispersed PBs, however molecular targets were different since PB dispersal due to 2A(pro) and heat shock protein (Hsp)90 inhibition but not 3C(pro), could be rescued by application of oxidative stress to cells. The data indicate that PV repression of SGs and PBs is multifactorial, though protease function is dominant.
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spelling pubmed-46908512016-01-04 Multiple Poliovirus Proteins Repress Cytoplasmic RNA Granules Dougherty, Jonathan D. Tsai, Wei-Chih Lloyd, Richard E. Viruses Article We have previously shown that poliovirus (PV) infection induces stress granule (SG) formation early in infection and then inhibits the formation of SG and disperses processing bodies (PBs) by the mid-phase of infection. Loss of SG was linked to cleavage of G3BP1 by viral 3C proteinase (3C(pro)), however dispersal of PBs was not strongly linked to cleavage of specific factors by viral proteinases, suggesting other viral proteins may play roles in inhibition of SG or PB formation. Here we have screened all viral proteins for roles in inducing or inhibiting the formation of RNA granules by creating fusions with mCherry and expressing them individually in cells. Expression of viral proteins separately revealed that the capsid region P1, 2A(pro), 3A, 3C(pro), the protease precursor 3CD and 3D polymerase all affect RNA granules to varying extents, whereas 2BC does not. 2A(pro), which cleaves eIF4GI, induced SGs as expected, and entered novel foci containing the SG nucleating protein G3BP1. Of the two forms of G3BP, only G3BP1 is cleaved by a virus proteinase, 3C(pro), whereas G3BP2 is not cleaved by 3C(pro) or 2A(pro). Surprisingly, 3CD, which contains proteinase activity, differentially repressed PBs but not SGs. Further, both 2A(pro) and 3C(pro) expression dispersed PBs, however molecular targets were different since PB dispersal due to 2A(pro) and heat shock protein (Hsp)90 inhibition but not 3C(pro), could be rescued by application of oxidative stress to cells. The data indicate that PV repression of SGs and PBs is multifactorial, though protease function is dominant. MDPI 2015-12-25 /pmc/articles/PMC4690851/ /pubmed/26610553 http://dx.doi.org/10.3390/v7122922 Text en © 2015 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dougherty, Jonathan D.
Tsai, Wei-Chih
Lloyd, Richard E.
Multiple Poliovirus Proteins Repress Cytoplasmic RNA Granules
title Multiple Poliovirus Proteins Repress Cytoplasmic RNA Granules
title_full Multiple Poliovirus Proteins Repress Cytoplasmic RNA Granules
title_fullStr Multiple Poliovirus Proteins Repress Cytoplasmic RNA Granules
title_full_unstemmed Multiple Poliovirus Proteins Repress Cytoplasmic RNA Granules
title_short Multiple Poliovirus Proteins Repress Cytoplasmic RNA Granules
title_sort multiple poliovirus proteins repress cytoplasmic rna granules
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4690851/
https://www.ncbi.nlm.nih.gov/pubmed/26610553
http://dx.doi.org/10.3390/v7122922
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