Cargando…

The Toxoplasma gondii Active Serine Hydrolase 4 Regulates Parasite Division and Intravacuolar Parasite Architecture

Hydrolase are enzymes that regulate diverse biological processes, including posttranslational protein modifications. Recent work identified four active serine hydrolases (ASHs) in Toxoplasma gondii as candidate depalmitoylases. However, only TgPPT1 (ASH1) has been confirmed to remove palmitate from...

Descripción completa

Detalles Bibliográficos
Autores principales: Foe, Ian T., Onguka, Ouma, Amberg-Johnson, Katherine, Garner, Rikki M., Amara, Neri, Beatty, Wandy, Yeh, Ellen, Bogyo, Matthew
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6147133/
https://www.ncbi.nlm.nih.gov/pubmed/30232166
http://dx.doi.org/10.1128/mSphere.00393-18
_version_ 1783356516872486912
author Foe, Ian T.
Onguka, Ouma
Amberg-Johnson, Katherine
Garner, Rikki M.
Amara, Neri
Beatty, Wandy
Yeh, Ellen
Bogyo, Matthew
author_facet Foe, Ian T.
Onguka, Ouma
Amberg-Johnson, Katherine
Garner, Rikki M.
Amara, Neri
Beatty, Wandy
Yeh, Ellen
Bogyo, Matthew
author_sort Foe, Ian T.
collection PubMed
description Hydrolase are enzymes that regulate diverse biological processes, including posttranslational protein modifications. Recent work identified four active serine hydrolases (ASHs) in Toxoplasma gondii as candidate depalmitoylases. However, only TgPPT1 (ASH1) has been confirmed to remove palmitate from proteins. ASH4 (TgME49_264290) was reported to be refractory to genetic disruption. We demonstrate that recombinant ASH4 is an esterase that processes short acyl esters but not palmitoyl thioesters. Genetic disruption of ASH4 causes defects in cell division and premature scission of parasites from residual bodies. These defects lead to the presence of vacuoles with a disordered intravacuolar architecture, with parasites arranged in pairs around multiple residual bodies. Importantly, we found that the deletion of ASH4 correlates with a defect in radial dispersion from host cells after egress. This defect in dispersion of parasites is a general phenomenon that is observed for disordered vacuoles that occur at low frequency in wild-type parasites, suggesting a possible general link between intravacuolar organization and dispersion after egress. IMPORTANCE This work defines the function of an enzyme in the obligate intracellular parasite Toxoplasma gondii. We show that this previously uncharacterized enzyme is critical for aspects of cellular division by the parasite and that loss of this enzyme leads to parasites with cell division defects and which also are disorganized inside their vacuoles. This leads to defects in the ability of the parasite to disseminate from the site of an infection and may have a significant impact on the parasite's overall infectivity of a host organism.
format Online
Article
Text
id pubmed-6147133
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-61471332018-09-21 The Toxoplasma gondii Active Serine Hydrolase 4 Regulates Parasite Division and Intravacuolar Parasite Architecture Foe, Ian T. Onguka, Ouma Amberg-Johnson, Katherine Garner, Rikki M. Amara, Neri Beatty, Wandy Yeh, Ellen Bogyo, Matthew mSphere Research Article Hydrolase are enzymes that regulate diverse biological processes, including posttranslational protein modifications. Recent work identified four active serine hydrolases (ASHs) in Toxoplasma gondii as candidate depalmitoylases. However, only TgPPT1 (ASH1) has been confirmed to remove palmitate from proteins. ASH4 (TgME49_264290) was reported to be refractory to genetic disruption. We demonstrate that recombinant ASH4 is an esterase that processes short acyl esters but not palmitoyl thioesters. Genetic disruption of ASH4 causes defects in cell division and premature scission of parasites from residual bodies. These defects lead to the presence of vacuoles with a disordered intravacuolar architecture, with parasites arranged in pairs around multiple residual bodies. Importantly, we found that the deletion of ASH4 correlates with a defect in radial dispersion from host cells after egress. This defect in dispersion of parasites is a general phenomenon that is observed for disordered vacuoles that occur at low frequency in wild-type parasites, suggesting a possible general link between intravacuolar organization and dispersion after egress. IMPORTANCE This work defines the function of an enzyme in the obligate intracellular parasite Toxoplasma gondii. We show that this previously uncharacterized enzyme is critical for aspects of cellular division by the parasite and that loss of this enzyme leads to parasites with cell division defects and which also are disorganized inside their vacuoles. This leads to defects in the ability of the parasite to disseminate from the site of an infection and may have a significant impact on the parasite's overall infectivity of a host organism. American Society for Microbiology 2018-09-19 /pmc/articles/PMC6147133/ /pubmed/30232166 http://dx.doi.org/10.1128/mSphere.00393-18 Text en Copyright © 2018 Foe et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Foe, Ian T.
Onguka, Ouma
Amberg-Johnson, Katherine
Garner, Rikki M.
Amara, Neri
Beatty, Wandy
Yeh, Ellen
Bogyo, Matthew
The Toxoplasma gondii Active Serine Hydrolase 4 Regulates Parasite Division and Intravacuolar Parasite Architecture
title The Toxoplasma gondii Active Serine Hydrolase 4 Regulates Parasite Division and Intravacuolar Parasite Architecture
title_full The Toxoplasma gondii Active Serine Hydrolase 4 Regulates Parasite Division and Intravacuolar Parasite Architecture
title_fullStr The Toxoplasma gondii Active Serine Hydrolase 4 Regulates Parasite Division and Intravacuolar Parasite Architecture
title_full_unstemmed The Toxoplasma gondii Active Serine Hydrolase 4 Regulates Parasite Division and Intravacuolar Parasite Architecture
title_short The Toxoplasma gondii Active Serine Hydrolase 4 Regulates Parasite Division and Intravacuolar Parasite Architecture
title_sort toxoplasma gondii active serine hydrolase 4 regulates parasite division and intravacuolar parasite architecture
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6147133/
https://www.ncbi.nlm.nih.gov/pubmed/30232166
http://dx.doi.org/10.1128/mSphere.00393-18
work_keys_str_mv AT foeiant thetoxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT ongukaouma thetoxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT ambergjohnsonkatherine thetoxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT garnerrikkim thetoxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT amaraneri thetoxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT beattywandy thetoxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT yehellen thetoxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT bogyomatthew thetoxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT foeiant toxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT ongukaouma toxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT ambergjohnsonkatherine toxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT garnerrikkim toxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT amaraneri toxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT beattywandy toxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT yehellen toxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture
AT bogyomatthew toxoplasmagondiiactiveserinehydrolase4regulatesparasitedivisionandintravacuolarparasitearchitecture