The Toxoplasma gondii Cyst Wall Interactome
A model of the cyst wall interactome was constructed using proteins identified through BioID. The proteins within this cyst wall interactome model encompass several proteins identified in a prior characterization of the cyst wall proteome. This model provides a more comprehensive understanding of th...
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American Society for Microbiology
2020-02-01
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Online Access: | https://doi.org/10.1128/mBio.02699-19 |
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doaj-131613ed9f554cd6861626a70f65dedf2021-07-02T12:17:06ZengAmerican Society for MicrobiologymBio2150-75112020-02-01111e02699-1910.1128/mBio.02699-19The Toxoplasma gondii Cyst Wall InteractomeVincent TuTadakimi TomitaTatsuki SugiJoshua MayoralBing HanRama R. YakubuTere WilliamsAline HortaYanfen MaLouis M. WeissA model of the cyst wall interactome was constructed using proteins identified through BioID. The proteins within this cyst wall interactome model encompass several proteins identified in a prior characterization of the cyst wall proteome. This model provides a more comprehensive understanding of the composition of the cyst wall and may lead to insights on how the cyst wall is formed.A characteristic of the latent cyst stage of Toxoplasma gondii is a thick cyst wall that forms underneath the membrane of the bradyzoite vacuole. Previously, our laboratory group published a proteomic analysis of purified in vitro cyst wall fragments that identified an inventory of cyst wall components. To further refine our understanding of the composition of the cyst wall, several cyst wall proteins were tagged with a promiscuous biotin ligase (BirA*), and their interacting partners were screened by streptavidin affinity purification. Within the cyst wall pulldowns, previously described cyst wall proteins, dense granule proteins, and uncharacterized hypothetical proteins were identified. Several of the newly identified hypothetical proteins were validated to be novel components of the cyst wall and tagged with BirA* to expand the model of the cyst wall interactome. Community detection of the cyst wall interactome model revealed three distinct clusters: a dense granule, a cyst matrix, and a cyst wall cluster. Characterization of several of the identified cyst wall proteins using genetic strategies revealed that MCP3 affects in vivo cyst sizes. This study provides a model of the potential protein interactions within the cyst wall and the groundwork to understand cyst wall formation.https://doi.org/10.1128/mBio.02699-19biracyst walltoxoplasma gondiiprotein interactionsproteomics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Vincent Tu Tadakimi Tomita Tatsuki Sugi Joshua Mayoral Bing Han Rama R. Yakubu Tere Williams Aline Horta Yanfen Ma Louis M. Weiss |
spellingShingle |
Vincent Tu Tadakimi Tomita Tatsuki Sugi Joshua Mayoral Bing Han Rama R. Yakubu Tere Williams Aline Horta Yanfen Ma Louis M. Weiss The Toxoplasma gondii Cyst Wall Interactome mBio bira cyst wall toxoplasma gondii protein interactions proteomics |
author_facet |
Vincent Tu Tadakimi Tomita Tatsuki Sugi Joshua Mayoral Bing Han Rama R. Yakubu Tere Williams Aline Horta Yanfen Ma Louis M. Weiss |
author_sort |
Vincent Tu |
title |
The Toxoplasma gondii Cyst Wall Interactome |
title_short |
The Toxoplasma gondii Cyst Wall Interactome |
title_full |
The Toxoplasma gondii Cyst Wall Interactome |
title_fullStr |
The Toxoplasma gondii Cyst Wall Interactome |
title_full_unstemmed |
The Toxoplasma gondii Cyst Wall Interactome |
title_sort |
toxoplasma gondii cyst wall interactome |
publisher |
American Society for Microbiology |
series |
mBio |
issn |
2150-7511 |
publishDate |
2020-02-01 |
description |
A model of the cyst wall interactome was constructed using proteins identified through BioID. The proteins within this cyst wall interactome model encompass several proteins identified in a prior characterization of the cyst wall proteome. This model provides a more comprehensive understanding of the composition of the cyst wall and may lead to insights on how the cyst wall is formed.A characteristic of the latent cyst stage of Toxoplasma gondii is a thick cyst wall that forms underneath the membrane of the bradyzoite vacuole. Previously, our laboratory group published a proteomic analysis of purified in vitro cyst wall fragments that identified an inventory of cyst wall components. To further refine our understanding of the composition of the cyst wall, several cyst wall proteins were tagged with a promiscuous biotin ligase (BirA*), and their interacting partners were screened by streptavidin affinity purification. Within the cyst wall pulldowns, previously described cyst wall proteins, dense granule proteins, and uncharacterized hypothetical proteins were identified. Several of the newly identified hypothetical proteins were validated to be novel components of the cyst wall and tagged with BirA* to expand the model of the cyst wall interactome. Community detection of the cyst wall interactome model revealed three distinct clusters: a dense granule, a cyst matrix, and a cyst wall cluster. Characterization of several of the identified cyst wall proteins using genetic strategies revealed that MCP3 affects in vivo cyst sizes. This study provides a model of the potential protein interactions within the cyst wall and the groundwork to understand cyst wall formation. |
topic |
bira cyst wall toxoplasma gondii protein interactions proteomics |
url |
https://doi.org/10.1128/mBio.02699-19 |
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