Cargando…

Multi-layered control of Galectin-8 mediated autophagy during adenovirus cell entry through a conserved PPxY motif in the viral capsid

Cells employ active measures to restrict infection by pathogens, even prior to responses from the innate and humoral immune defenses. In this context selective autophagy is activated upon pathogen induced membrane rupture to sequester and deliver membrane fragments and their pathogen contents for ly...

Descripción completa

Detalles Bibliográficos
Autores principales: Montespan, Charlotte, Marvin, Shauna A., Austin, Sisley, Burrage, Andrew M., Roger, Benoit, Rayne, Fabienne, Faure, Muriel, Campell, Edward M., Schneider, Carola, Reimer, Rudolph, Grünewald, Kay, Wiethoff, Christopher M., Wodrich, Harald
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5325606/
https://www.ncbi.nlm.nih.gov/pubmed/28192531
http://dx.doi.org/10.1371/journal.ppat.1006217
_version_ 1782510421874311168
author Montespan, Charlotte
Marvin, Shauna A.
Austin, Sisley
Burrage, Andrew M.
Roger, Benoit
Rayne, Fabienne
Faure, Muriel
Campell, Edward M.
Schneider, Carola
Reimer, Rudolph
Grünewald, Kay
Wiethoff, Christopher M.
Wodrich, Harald
author_facet Montespan, Charlotte
Marvin, Shauna A.
Austin, Sisley
Burrage, Andrew M.
Roger, Benoit
Rayne, Fabienne
Faure, Muriel
Campell, Edward M.
Schneider, Carola
Reimer, Rudolph
Grünewald, Kay
Wiethoff, Christopher M.
Wodrich, Harald
author_sort Montespan, Charlotte
collection PubMed
description Cells employ active measures to restrict infection by pathogens, even prior to responses from the innate and humoral immune defenses. In this context selective autophagy is activated upon pathogen induced membrane rupture to sequester and deliver membrane fragments and their pathogen contents for lysosomal degradation. Adenoviruses, which breach the endosome upon entry, escape this fate by penetrating into the cytosol prior to autophagosome sequestration of the ruptured endosome. We show that virus induced membrane damage is recognized through Galectin-8 and sequesters the autophagy receptors NDP52 and p62. We further show that a conserved PPxY motif in the viral membrane lytic protein VI is critical for efficient viral evasion of autophagic sequestration after endosomal lysis. Comparing the wildtype with a PPxY-mutant virus we show that depletion of Galectin-8 or suppression of autophagy in ATG5-/- MEFs rescues infectivity of the PPxY-mutant virus while depletion of the autophagy receptors NDP52, p62 has only minor effects. Furthermore we show that wildtype viruses exploit the autophagic machinery for efficient nuclear genome delivery and control autophagosome formation via the cellular ubiquitin ligase Nedd4.2 resulting in reduced antigenic presentation. Our data thus demonstrate that a short PPxY-peptide motif in the adenoviral capsid permits multi-layered viral control of autophagic processes during entry.
format Online
Article
Text
id pubmed-5325606
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-53256062017-03-10 Multi-layered control of Galectin-8 mediated autophagy during adenovirus cell entry through a conserved PPxY motif in the viral capsid Montespan, Charlotte Marvin, Shauna A. Austin, Sisley Burrage, Andrew M. Roger, Benoit Rayne, Fabienne Faure, Muriel Campell, Edward M. Schneider, Carola Reimer, Rudolph Grünewald, Kay Wiethoff, Christopher M. Wodrich, Harald PLoS Pathog Research Article Cells employ active measures to restrict infection by pathogens, even prior to responses from the innate and humoral immune defenses. In this context selective autophagy is activated upon pathogen induced membrane rupture to sequester and deliver membrane fragments and their pathogen contents for lysosomal degradation. Adenoviruses, which breach the endosome upon entry, escape this fate by penetrating into the cytosol prior to autophagosome sequestration of the ruptured endosome. We show that virus induced membrane damage is recognized through Galectin-8 and sequesters the autophagy receptors NDP52 and p62. We further show that a conserved PPxY motif in the viral membrane lytic protein VI is critical for efficient viral evasion of autophagic sequestration after endosomal lysis. Comparing the wildtype with a PPxY-mutant virus we show that depletion of Galectin-8 or suppression of autophagy in ATG5-/- MEFs rescues infectivity of the PPxY-mutant virus while depletion of the autophagy receptors NDP52, p62 has only minor effects. Furthermore we show that wildtype viruses exploit the autophagic machinery for efficient nuclear genome delivery and control autophagosome formation via the cellular ubiquitin ligase Nedd4.2 resulting in reduced antigenic presentation. Our data thus demonstrate that a short PPxY-peptide motif in the adenoviral capsid permits multi-layered viral control of autophagic processes during entry. Public Library of Science 2017-02-13 /pmc/articles/PMC5325606/ /pubmed/28192531 http://dx.doi.org/10.1371/journal.ppat.1006217 Text en © 2017 Montespan 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Montespan, Charlotte
Marvin, Shauna A.
Austin, Sisley
Burrage, Andrew M.
Roger, Benoit
Rayne, Fabienne
Faure, Muriel
Campell, Edward M.
Schneider, Carola
Reimer, Rudolph
Grünewald, Kay
Wiethoff, Christopher M.
Wodrich, Harald
Multi-layered control of Galectin-8 mediated autophagy during adenovirus cell entry through a conserved PPxY motif in the viral capsid
title Multi-layered control of Galectin-8 mediated autophagy during adenovirus cell entry through a conserved PPxY motif in the viral capsid
title_full Multi-layered control of Galectin-8 mediated autophagy during adenovirus cell entry through a conserved PPxY motif in the viral capsid
title_fullStr Multi-layered control of Galectin-8 mediated autophagy during adenovirus cell entry through a conserved PPxY motif in the viral capsid
title_full_unstemmed Multi-layered control of Galectin-8 mediated autophagy during adenovirus cell entry through a conserved PPxY motif in the viral capsid
title_short Multi-layered control of Galectin-8 mediated autophagy during adenovirus cell entry through a conserved PPxY motif in the viral capsid
title_sort multi-layered control of galectin-8 mediated autophagy during adenovirus cell entry through a conserved ppxy motif in the viral capsid
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5325606/
https://www.ncbi.nlm.nih.gov/pubmed/28192531
http://dx.doi.org/10.1371/journal.ppat.1006217
work_keys_str_mv AT montespancharlotte multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT marvinshaunaa multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT austinsisley multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT burrageandrewm multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT rogerbenoit multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT raynefabienne multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT fauremuriel multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT campelledwardm multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT schneidercarola multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT reimerrudolph multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT grunewaldkay multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT wiethoffchristopherm multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid
AT wodrichharald multilayeredcontrolofgalectin8mediatedautophagyduringadenoviruscellentrythroughaconservedppxymotifintheviralcapsid