Fundamental Roles of the Golgi-Associated Toxoplasma Aspartyl Protease, ASP5, at the Host-Parasite Interface.

Toxoplasma gondii possesses sets of dense granule proteins (GRAs) that either assemble at, or cross the parasitophorous vacuole membrane (PVM) and exhibit motifs resembling the HT/PEXEL previously identified in a repertoire of exported Plasmodium proteins. Within Plasmodium spp., cleavage of the HT/...

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Main Authors: Pierre-Mehdi Hammoudi, Damien Jacot, Christina Mueller, Manlio Di Cristina, Sunil Kumar Dogga, Jean-Baptiste Marq, Julia Romano, Nicolò Tosetti, Juan Dubrot, Yalin Emre, Matteo Lunghi, Isabelle Coppens, Masahiro Yamamoto, Daniel Sojka, Paco Pino, Dominique Soldati-Favre
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-10-01
Series:PLoS Pathogens
Online Access:http://europepmc.org/articles/PMC4608785?pdf=render
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spelling doaj-810cc7a9ed4f4344aa2f770c96fc5e982020-11-25T01:15:21ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742015-10-011110e100521110.1371/journal.ppat.1005211Fundamental Roles of the Golgi-Associated Toxoplasma Aspartyl Protease, ASP5, at the Host-Parasite Interface.Pierre-Mehdi HammoudiDamien JacotChristina MuellerManlio Di CristinaSunil Kumar DoggaJean-Baptiste MarqJulia RomanoNicolò TosettiJuan DubrotYalin EmreMatteo LunghiIsabelle CoppensMasahiro YamamotoDaniel SojkaPaco PinoDominique Soldati-FavreToxoplasma gondii possesses sets of dense granule proteins (GRAs) that either assemble at, or cross the parasitophorous vacuole membrane (PVM) and exhibit motifs resembling the HT/PEXEL previously identified in a repertoire of exported Plasmodium proteins. Within Plasmodium spp., cleavage of the HT/PEXEL motif by the endoplasmic reticulum-resident protease Plasmepsin V precedes trafficking to and export across the PVM of proteins involved in pathogenicity and host cell remodelling. Here, we have functionally characterized the T. gondii aspartyl protease 5 (ASP5), a Golgi-resident protease that is phylogenetically related to Plasmepsin V. We show that deletion of ASP5 causes a significant loss in parasite fitness in vitro and an altered virulence in vivo. Furthermore, we reveal that ASP5 is necessary for the cleavage of GRA16, GRA19 and GRA20 at the PEXEL-like motif. In the absence of ASP5, the intravacuolar nanotubular network disappears and several GRAs fail to localize to the PVM, while GRA16 and GRA24, both known to be targeted to the host cell nucleus, are retained within the vacuolar space. Additionally, hypermigration of dendritic cells and bradyzoite cyst wall formation are impaired, critically impacting on parasite dissemination and persistence. Overall, the absence of ASP5 dramatically compromises the parasite's ability to modulate host signalling pathways and immune responses.http://europepmc.org/articles/PMC4608785?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Pierre-Mehdi Hammoudi
Damien Jacot
Christina Mueller
Manlio Di Cristina
Sunil Kumar Dogga
Jean-Baptiste Marq
Julia Romano
Nicolò Tosetti
Juan Dubrot
Yalin Emre
Matteo Lunghi
Isabelle Coppens
Masahiro Yamamoto
Daniel Sojka
Paco Pino
Dominique Soldati-Favre
spellingShingle Pierre-Mehdi Hammoudi
Damien Jacot
Christina Mueller
Manlio Di Cristina
Sunil Kumar Dogga
Jean-Baptiste Marq
Julia Romano
Nicolò Tosetti
Juan Dubrot
Yalin Emre
Matteo Lunghi
Isabelle Coppens
Masahiro Yamamoto
Daniel Sojka
Paco Pino
Dominique Soldati-Favre
Fundamental Roles of the Golgi-Associated Toxoplasma Aspartyl Protease, ASP5, at the Host-Parasite Interface.
PLoS Pathogens
author_facet Pierre-Mehdi Hammoudi
Damien Jacot
Christina Mueller
Manlio Di Cristina
Sunil Kumar Dogga
Jean-Baptiste Marq
Julia Romano
Nicolò Tosetti
Juan Dubrot
Yalin Emre
Matteo Lunghi
Isabelle Coppens
Masahiro Yamamoto
Daniel Sojka
Paco Pino
Dominique Soldati-Favre
author_sort Pierre-Mehdi Hammoudi
title Fundamental Roles of the Golgi-Associated Toxoplasma Aspartyl Protease, ASP5, at the Host-Parasite Interface.
title_short Fundamental Roles of the Golgi-Associated Toxoplasma Aspartyl Protease, ASP5, at the Host-Parasite Interface.
title_full Fundamental Roles of the Golgi-Associated Toxoplasma Aspartyl Protease, ASP5, at the Host-Parasite Interface.
title_fullStr Fundamental Roles of the Golgi-Associated Toxoplasma Aspartyl Protease, ASP5, at the Host-Parasite Interface.
title_full_unstemmed Fundamental Roles of the Golgi-Associated Toxoplasma Aspartyl Protease, ASP5, at the Host-Parasite Interface.
title_sort fundamental roles of the golgi-associated toxoplasma aspartyl protease, asp5, at the host-parasite interface.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2015-10-01
description Toxoplasma gondii possesses sets of dense granule proteins (GRAs) that either assemble at, or cross the parasitophorous vacuole membrane (PVM) and exhibit motifs resembling the HT/PEXEL previously identified in a repertoire of exported Plasmodium proteins. Within Plasmodium spp., cleavage of the HT/PEXEL motif by the endoplasmic reticulum-resident protease Plasmepsin V precedes trafficking to and export across the PVM of proteins involved in pathogenicity and host cell remodelling. Here, we have functionally characterized the T. gondii aspartyl protease 5 (ASP5), a Golgi-resident protease that is phylogenetically related to Plasmepsin V. We show that deletion of ASP5 causes a significant loss in parasite fitness in vitro and an altered virulence in vivo. Furthermore, we reveal that ASP5 is necessary for the cleavage of GRA16, GRA19 and GRA20 at the PEXEL-like motif. In the absence of ASP5, the intravacuolar nanotubular network disappears and several GRAs fail to localize to the PVM, while GRA16 and GRA24, both known to be targeted to the host cell nucleus, are retained within the vacuolar space. Additionally, hypermigration of dendritic cells and bradyzoite cyst wall formation are impaired, critically impacting on parasite dissemination and persistence. Overall, the absence of ASP5 dramatically compromises the parasite's ability to modulate host signalling pathways and immune responses.
url http://europepmc.org/articles/PMC4608785?pdf=render
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