Cargando…

Super Resolution Microscopy Reveals that Caveolin-1 Is Required for Spatial Organization of CRFB1 and Subsequent Antiviral Signaling in Zebrafish

Understanding spatial distribution and dynamics of receptors within unperturbed membranes is essential for elucidating their role in antiviral signaling, but conventional studies of detergent-resistant membrane fractions cannot provide this information. Caveolae are integral to numerous signaling pa...

Descripción completa

Detalles Bibliográficos
Autores principales: Gabor, Kristin A., Stevens, Chad R., Pietraszewski, Matthew J., Gould, Travis J., Shim, Juyoung, Yoder, Jeffrey A., Lam, Siew Hong, Gong, Zhiyuan, Hess, Samuel T., Kim, Carol H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3706321/
https://www.ncbi.nlm.nih.gov/pubmed/23874753
http://dx.doi.org/10.1371/journal.pone.0068759
_version_ 1782476536549474304
author Gabor, Kristin A.
Stevens, Chad R.
Pietraszewski, Matthew J.
Gould, Travis J.
Shim, Juyoung
Yoder, Jeffrey A.
Lam, Siew Hong
Gong, Zhiyuan
Hess, Samuel T.
Kim, Carol H.
author_facet Gabor, Kristin A.
Stevens, Chad R.
Pietraszewski, Matthew J.
Gould, Travis J.
Shim, Juyoung
Yoder, Jeffrey A.
Lam, Siew Hong
Gong, Zhiyuan
Hess, Samuel T.
Kim, Carol H.
author_sort Gabor, Kristin A.
collection PubMed
description Understanding spatial distribution and dynamics of receptors within unperturbed membranes is essential for elucidating their role in antiviral signaling, but conventional studies of detergent-resistant membrane fractions cannot provide this information. Caveolae are integral to numerous signaling pathways and these membrane domains have been previously implicated in viral entry but not antiviral defense. This study shows, for the first time, the importance of spatio-temporal regulation of signaling receptors and the importance of the regulation of clustering for downstream signaling. A novel mechanism for virus evasion of host cell defenses is demonstrated through disruption of clusters of signaling molecules organized within caveolin-rich domains. Viral infection leads to a downregulation in Caveolin-1b (Cav-1b), disrupting clusters of CRFB1, a zebrafish type I interferon receptor (–R) subunit. Super-resolution microscopy has enabled the first single-molecule imaging of CRFB1 association with cav-1b-containing membrane domains. Strikingly, downregulation of Cav-1b, the major protein component of caveolae, caused CRFB1 clusters to disperse. Dispersal of CRFB1 clusters led to a suppressed antiviral immune response both in vitro and in vivo, through abrogation of downstream signaling. This response strongly suggests that CRFB1 organization within cav-1b-containing membrane domains is critical for IFN-mediated antiviral defense and presents a previously undescribed antiviral evasion strategy to alter IFN signaling and the antiviral immune response.
format Online
Article
Text
id pubmed-3706321
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37063212013-07-19 Super Resolution Microscopy Reveals that Caveolin-1 Is Required for Spatial Organization of CRFB1 and Subsequent Antiviral Signaling in Zebrafish Gabor, Kristin A. Stevens, Chad R. Pietraszewski, Matthew J. Gould, Travis J. Shim, Juyoung Yoder, Jeffrey A. Lam, Siew Hong Gong, Zhiyuan Hess, Samuel T. Kim, Carol H. PLoS One Research Article Understanding spatial distribution and dynamics of receptors within unperturbed membranes is essential for elucidating their role in antiviral signaling, but conventional studies of detergent-resistant membrane fractions cannot provide this information. Caveolae are integral to numerous signaling pathways and these membrane domains have been previously implicated in viral entry but not antiviral defense. This study shows, for the first time, the importance of spatio-temporal regulation of signaling receptors and the importance of the regulation of clustering for downstream signaling. A novel mechanism for virus evasion of host cell defenses is demonstrated through disruption of clusters of signaling molecules organized within caveolin-rich domains. Viral infection leads to a downregulation in Caveolin-1b (Cav-1b), disrupting clusters of CRFB1, a zebrafish type I interferon receptor (–R) subunit. Super-resolution microscopy has enabled the first single-molecule imaging of CRFB1 association with cav-1b-containing membrane domains. Strikingly, downregulation of Cav-1b, the major protein component of caveolae, caused CRFB1 clusters to disperse. Dispersal of CRFB1 clusters led to a suppressed antiviral immune response both in vitro and in vivo, through abrogation of downstream signaling. This response strongly suggests that CRFB1 organization within cav-1b-containing membrane domains is critical for IFN-mediated antiviral defense and presents a previously undescribed antiviral evasion strategy to alter IFN signaling and the antiviral immune response. Public Library of Science 2013-07-09 /pmc/articles/PMC3706321/ /pubmed/23874753 http://dx.doi.org/10.1371/journal.pone.0068759 Text en © 2013 Gabor 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
Gabor, Kristin A.
Stevens, Chad R.
Pietraszewski, Matthew J.
Gould, Travis J.
Shim, Juyoung
Yoder, Jeffrey A.
Lam, Siew Hong
Gong, Zhiyuan
Hess, Samuel T.
Kim, Carol H.
Super Resolution Microscopy Reveals that Caveolin-1 Is Required for Spatial Organization of CRFB1 and Subsequent Antiviral Signaling in Zebrafish
title Super Resolution Microscopy Reveals that Caveolin-1 Is Required for Spatial Organization of CRFB1 and Subsequent Antiviral Signaling in Zebrafish
title_full Super Resolution Microscopy Reveals that Caveolin-1 Is Required for Spatial Organization of CRFB1 and Subsequent Antiviral Signaling in Zebrafish
title_fullStr Super Resolution Microscopy Reveals that Caveolin-1 Is Required for Spatial Organization of CRFB1 and Subsequent Antiviral Signaling in Zebrafish
title_full_unstemmed Super Resolution Microscopy Reveals that Caveolin-1 Is Required for Spatial Organization of CRFB1 and Subsequent Antiviral Signaling in Zebrafish
title_short Super Resolution Microscopy Reveals that Caveolin-1 Is Required for Spatial Organization of CRFB1 and Subsequent Antiviral Signaling in Zebrafish
title_sort super resolution microscopy reveals that caveolin-1 is required for spatial organization of crfb1 and subsequent antiviral signaling in zebrafish
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3706321/
https://www.ncbi.nlm.nih.gov/pubmed/23874753
http://dx.doi.org/10.1371/journal.pone.0068759
work_keys_str_mv AT gaborkristina superresolutionmicroscopyrevealsthatcaveolin1isrequiredforspatialorganizationofcrfb1andsubsequentantiviralsignalinginzebrafish
AT stevenschadr superresolutionmicroscopyrevealsthatcaveolin1isrequiredforspatialorganizationofcrfb1andsubsequentantiviralsignalinginzebrafish
AT pietraszewskimatthewj superresolutionmicroscopyrevealsthatcaveolin1isrequiredforspatialorganizationofcrfb1andsubsequentantiviralsignalinginzebrafish
AT gouldtravisj superresolutionmicroscopyrevealsthatcaveolin1isrequiredforspatialorganizationofcrfb1andsubsequentantiviralsignalinginzebrafish
AT shimjuyoung superresolutionmicroscopyrevealsthatcaveolin1isrequiredforspatialorganizationofcrfb1andsubsequentantiviralsignalinginzebrafish
AT yoderjeffreya superresolutionmicroscopyrevealsthatcaveolin1isrequiredforspatialorganizationofcrfb1andsubsequentantiviralsignalinginzebrafish
AT lamsiewhong superresolutionmicroscopyrevealsthatcaveolin1isrequiredforspatialorganizationofcrfb1andsubsequentantiviralsignalinginzebrafish
AT gongzhiyuan superresolutionmicroscopyrevealsthatcaveolin1isrequiredforspatialorganizationofcrfb1andsubsequentantiviralsignalinginzebrafish
AT hesssamuelt superresolutionmicroscopyrevealsthatcaveolin1isrequiredforspatialorganizationofcrfb1andsubsequentantiviralsignalinginzebrafish
AT kimcarolh superresolutionmicroscopyrevealsthatcaveolin1isrequiredforspatialorganizationofcrfb1andsubsequentantiviralsignalinginzebrafish