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Cell-autonomous Toxoplasma killing program requires Irgm2 but not its microbe vacuolar localization

Interferon-inducible GTPases, such as immunity-related GTPases (IRGs) and guanylate-binding proteins (GBPs), are essential for cell-autonomous immunity against a wide variety of intracellular pathogens including Toxoplasma. IRGs comprise regulatory and effector subfamily proteins. Regulatory IRGs Ir...

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Autores principales: Pradipta, Ariel, Sasai, Miwa, Motani, Kou, Ma, Ji Su, Lee, Youngae, Kosako, Hidetaka, Yamamoto, Masahiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8200298/
https://www.ncbi.nlm.nih.gov/pubmed/34078740
http://dx.doi.org/10.26508/lsa.202000960
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author Pradipta, Ariel
Sasai, Miwa
Motani, Kou
Ma, Ji Su
Lee, Youngae
Kosako, Hidetaka
Yamamoto, Masahiro
author_facet Pradipta, Ariel
Sasai, Miwa
Motani, Kou
Ma, Ji Su
Lee, Youngae
Kosako, Hidetaka
Yamamoto, Masahiro
author_sort Pradipta, Ariel
collection PubMed
description Interferon-inducible GTPases, such as immunity-related GTPases (IRGs) and guanylate-binding proteins (GBPs), are essential for cell-autonomous immunity against a wide variety of intracellular pathogens including Toxoplasma. IRGs comprise regulatory and effector subfamily proteins. Regulatory IRGs Irgm1 and Irgm3 play important roles in anti-Toxoplasma immunity by globally controlling effector IRGs and GBPs. There is a remaining regulatory IRG, called Irgm2, which highly accumulates on parasitophorous vacuole membranes (PVMs). Very little is known about the mechanism of the unique localization on Toxoplasma PVMs. Here, we show that Irgm2 is important to control parasite killing through recruitment of Gbp1 and Irgb6, which does not require Irgm2 localization at Toxoplasma PVMs. Ubiquitination of Irgm2 in the cytosol, but not at the PVM, is also important for parasite killing through recruitment of Gbp1 to the PVM. Conversely, PVM ubiquitination and p62/Sqstm1 loading at later time points post-Toxoplasma infection require Irgm2 localization at the PVM. Irgm2-deficient mice are highly susceptible to Toxoplasma infection. Taken together, these data indicate that Irgm2 selectively controls accumulation of anti-Toxoplasma effectors to the vacuole in a manner dependent or independent on Irgm2 localization at the Toxoplasma PVM, which mediates parasite killing.
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spelling pubmed-82002982021-06-24 Cell-autonomous Toxoplasma killing program requires Irgm2 but not its microbe vacuolar localization Pradipta, Ariel Sasai, Miwa Motani, Kou Ma, Ji Su Lee, Youngae Kosako, Hidetaka Yamamoto, Masahiro Life Sci Alliance Research Articles Interferon-inducible GTPases, such as immunity-related GTPases (IRGs) and guanylate-binding proteins (GBPs), are essential for cell-autonomous immunity against a wide variety of intracellular pathogens including Toxoplasma. IRGs comprise regulatory and effector subfamily proteins. Regulatory IRGs Irgm1 and Irgm3 play important roles in anti-Toxoplasma immunity by globally controlling effector IRGs and GBPs. There is a remaining regulatory IRG, called Irgm2, which highly accumulates on parasitophorous vacuole membranes (PVMs). Very little is known about the mechanism of the unique localization on Toxoplasma PVMs. Here, we show that Irgm2 is important to control parasite killing through recruitment of Gbp1 and Irgb6, which does not require Irgm2 localization at Toxoplasma PVMs. Ubiquitination of Irgm2 in the cytosol, but not at the PVM, is also important for parasite killing through recruitment of Gbp1 to the PVM. Conversely, PVM ubiquitination and p62/Sqstm1 loading at later time points post-Toxoplasma infection require Irgm2 localization at the PVM. Irgm2-deficient mice are highly susceptible to Toxoplasma infection. Taken together, these data indicate that Irgm2 selectively controls accumulation of anti-Toxoplasma effectors to the vacuole in a manner dependent or independent on Irgm2 localization at the Toxoplasma PVM, which mediates parasite killing. Life Science Alliance LLC 2021-06-02 /pmc/articles/PMC8200298/ /pubmed/34078740 http://dx.doi.org/10.26508/lsa.202000960 Text en © 2021 Pradipta et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Pradipta, Ariel
Sasai, Miwa
Motani, Kou
Ma, Ji Su
Lee, Youngae
Kosako, Hidetaka
Yamamoto, Masahiro
Cell-autonomous Toxoplasma killing program requires Irgm2 but not its microbe vacuolar localization
title Cell-autonomous Toxoplasma killing program requires Irgm2 but not its microbe vacuolar localization
title_full Cell-autonomous Toxoplasma killing program requires Irgm2 but not its microbe vacuolar localization
title_fullStr Cell-autonomous Toxoplasma killing program requires Irgm2 but not its microbe vacuolar localization
title_full_unstemmed Cell-autonomous Toxoplasma killing program requires Irgm2 but not its microbe vacuolar localization
title_short Cell-autonomous Toxoplasma killing program requires Irgm2 but not its microbe vacuolar localization
title_sort cell-autonomous toxoplasma killing program requires irgm2 but not its microbe vacuolar localization
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8200298/
https://www.ncbi.nlm.nih.gov/pubmed/34078740
http://dx.doi.org/10.26508/lsa.202000960
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