Cargando…

Production of a Dominant-Negative Fragment Due to G3BP1 Cleavage Contributes to the Disruption of Mitochondria-Associated Protective Stress Granules during CVB3 Infection

Stress granules (SGs) are dynamic cytosolic aggregates containing messenger ribonucleoproteins and target poly-adenylated (A)-mRNA. A key component of SGs is Ras-GAP SH3 domain binding protein-1 (G3BP1), which in part mediates protein-protein and protein-RNA interactions. SGs are modulated during in...

Descripción completa

Detalles Bibliográficos
Autores principales: Fung, Gabriel, Ng, Chen Seng, Zhang, Jingchun, Shi, Junyan, Wong, Jerry, Piesik, Paulina, Han, Lillian, Chu, Fanny, Jagdeo, Julienne, Jan, Eric, Fujita, Takashi, Luo, Honglin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3832613/
https://www.ncbi.nlm.nih.gov/pubmed/24260247
http://dx.doi.org/10.1371/journal.pone.0079546
_version_ 1782291711267962880
author Fung, Gabriel
Ng, Chen Seng
Zhang, Jingchun
Shi, Junyan
Wong, Jerry
Piesik, Paulina
Han, Lillian
Chu, Fanny
Jagdeo, Julienne
Jan, Eric
Fujita, Takashi
Luo, Honglin
author_facet Fung, Gabriel
Ng, Chen Seng
Zhang, Jingchun
Shi, Junyan
Wong, Jerry
Piesik, Paulina
Han, Lillian
Chu, Fanny
Jagdeo, Julienne
Jan, Eric
Fujita, Takashi
Luo, Honglin
author_sort Fung, Gabriel
collection PubMed
description Stress granules (SGs) are dynamic cytosolic aggregates containing messenger ribonucleoproteins and target poly-adenylated (A)-mRNA. A key component of SGs is Ras-GAP SH3 domain binding protein-1 (G3BP1), which in part mediates protein-protein and protein-RNA interactions. SGs are modulated during infection by several viruses, however, the function and significance of this process remains poorly understood. In this study, we investigated the interplay between SGs and Coxsackievirus type B3 (CVB3), a member of the Picornaviridae family. Our studies demonstrated that SGs were formed early during CVB3 infection; however, G3BP1-positive SGs were actively disassembled at 5 hrs post-infection, while poly(A)-positive RNA granules persisted. Furthermore, we confirmed G3BP1 cleavage by 3C(pro) at Q325. We also demonstrated that overexpression of G3BP1-SGs negatively impacted viral replication at the RNA, protein, and viral progeny levels. Using electron microscopy techniques, we showed that G3BP1-positive SGs localized near mitochondrial surfaces. Finally, we provided evidence that the C-terminal cleavage product of G3BP1 inhibited SG formation and promoted CVB3 replication. Taken together, we conclude that CVB3 infection selectively targets G3BP1-SGs by cleaving G3BP1 to produce a dominant-negative fragment that further inhibits G3BP1-SG formation and facilitates viral replication.
format Online
Article
Text
id pubmed-3832613
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-38326132013-11-20 Production of a Dominant-Negative Fragment Due to G3BP1 Cleavage Contributes to the Disruption of Mitochondria-Associated Protective Stress Granules during CVB3 Infection Fung, Gabriel Ng, Chen Seng Zhang, Jingchun Shi, Junyan Wong, Jerry Piesik, Paulina Han, Lillian Chu, Fanny Jagdeo, Julienne Jan, Eric Fujita, Takashi Luo, Honglin PLoS One Research Article Stress granules (SGs) are dynamic cytosolic aggregates containing messenger ribonucleoproteins and target poly-adenylated (A)-mRNA. A key component of SGs is Ras-GAP SH3 domain binding protein-1 (G3BP1), which in part mediates protein-protein and protein-RNA interactions. SGs are modulated during infection by several viruses, however, the function and significance of this process remains poorly understood. In this study, we investigated the interplay between SGs and Coxsackievirus type B3 (CVB3), a member of the Picornaviridae family. Our studies demonstrated that SGs were formed early during CVB3 infection; however, G3BP1-positive SGs were actively disassembled at 5 hrs post-infection, while poly(A)-positive RNA granules persisted. Furthermore, we confirmed G3BP1 cleavage by 3C(pro) at Q325. We also demonstrated that overexpression of G3BP1-SGs negatively impacted viral replication at the RNA, protein, and viral progeny levels. Using electron microscopy techniques, we showed that G3BP1-positive SGs localized near mitochondrial surfaces. Finally, we provided evidence that the C-terminal cleavage product of G3BP1 inhibited SG formation and promoted CVB3 replication. Taken together, we conclude that CVB3 infection selectively targets G3BP1-SGs by cleaving G3BP1 to produce a dominant-negative fragment that further inhibits G3BP1-SG formation and facilitates viral replication. Public Library of Science 2013-11-18 /pmc/articles/PMC3832613/ /pubmed/24260247 http://dx.doi.org/10.1371/journal.pone.0079546 Text en © 2013 Fung 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
Fung, Gabriel
Ng, Chen Seng
Zhang, Jingchun
Shi, Junyan
Wong, Jerry
Piesik, Paulina
Han, Lillian
Chu, Fanny
Jagdeo, Julienne
Jan, Eric
Fujita, Takashi
Luo, Honglin
Production of a Dominant-Negative Fragment Due to G3BP1 Cleavage Contributes to the Disruption of Mitochondria-Associated Protective Stress Granules during CVB3 Infection
title Production of a Dominant-Negative Fragment Due to G3BP1 Cleavage Contributes to the Disruption of Mitochondria-Associated Protective Stress Granules during CVB3 Infection
title_full Production of a Dominant-Negative Fragment Due to G3BP1 Cleavage Contributes to the Disruption of Mitochondria-Associated Protective Stress Granules during CVB3 Infection
title_fullStr Production of a Dominant-Negative Fragment Due to G3BP1 Cleavage Contributes to the Disruption of Mitochondria-Associated Protective Stress Granules during CVB3 Infection
title_full_unstemmed Production of a Dominant-Negative Fragment Due to G3BP1 Cleavage Contributes to the Disruption of Mitochondria-Associated Protective Stress Granules during CVB3 Infection
title_short Production of a Dominant-Negative Fragment Due to G3BP1 Cleavage Contributes to the Disruption of Mitochondria-Associated Protective Stress Granules during CVB3 Infection
title_sort production of a dominant-negative fragment due to g3bp1 cleavage contributes to the disruption of mitochondria-associated protective stress granules during cvb3 infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3832613/
https://www.ncbi.nlm.nih.gov/pubmed/24260247
http://dx.doi.org/10.1371/journal.pone.0079546
work_keys_str_mv AT funggabriel productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection
AT ngchenseng productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection
AT zhangjingchun productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection
AT shijunyan productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection
AT wongjerry productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection
AT piesikpaulina productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection
AT hanlillian productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection
AT chufanny productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection
AT jagdeojulienne productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection
AT janeric productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection
AT fujitatakashi productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection
AT luohonglin productionofadominantnegativefragmentduetog3bp1cleavagecontributestothedisruptionofmitochondriaassociatedprotectivestressgranulesduringcvb3infection