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The PYRIN domain-only protein POP3 inhibits AIM2-like receptor inflammasomes and regulates responses to DNA virus infections

The innate immune system responds to infections and tissue damage by activating cytosolic sensory complexes called inflammasomes. Cytosolic DNA is sensed by AIM2-like receptors (ALRs) during bacterial and viral infections and in autoimmune diseases. Subsequently, recruitment of the adaptor protein A...

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Autores principales: Khare, Sonal, Ratsimandresy, Rojo A., de Almeida, Lúcia, Cuda, Carla M., Rellick, Stephanie L., Misharin, Alexander V., Wallin, Melissa C., Gangopadhyay, Anu, Forte, Eleonora, Gottwein, Eva, Perlman, Harris, Reed, John C., Greaves, David R., Dorfleutner, Andrea, Stehlik, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4123781/
https://www.ncbi.nlm.nih.gov/pubmed/24531343
http://dx.doi.org/10.1038/ni.2829
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author Khare, Sonal
Ratsimandresy, Rojo A.
de Almeida, Lúcia
Cuda, Carla M.
Rellick, Stephanie L.
Misharin, Alexander V.
Wallin, Melissa C.
Gangopadhyay, Anu
Forte, Eleonora
Gottwein, Eva
Perlman, Harris
Reed, John C.
Greaves, David R.
Dorfleutner, Andrea
Stehlik, Christian
author_facet Khare, Sonal
Ratsimandresy, Rojo A.
de Almeida, Lúcia
Cuda, Carla M.
Rellick, Stephanie L.
Misharin, Alexander V.
Wallin, Melissa C.
Gangopadhyay, Anu
Forte, Eleonora
Gottwein, Eva
Perlman, Harris
Reed, John C.
Greaves, David R.
Dorfleutner, Andrea
Stehlik, Christian
author_sort Khare, Sonal
collection PubMed
description The innate immune system responds to infections and tissue damage by activating cytosolic sensory complexes called inflammasomes. Cytosolic DNA is sensed by AIM2-like receptors (ALRs) during bacterial and viral infections and in autoimmune diseases. Subsequently, recruitment of the adaptor protein ASC links ALRs to the activation of caspase-1. A controlled immune response is crucial for maintaining homeostasis, but ALR inflammasome regulation is poorly understood. Here, we identified the PYRIN domain (PYD)-only protein 3 (POP3), which competes with ASC for recruitment to ALRs, as an inhibitor of DNA virus-induced ALR inflammasome activation in vivo. Using a mouse model with macrophage-specific POP3 expression, the data emphasizes the importance of ALR inflammasome regulation in the monocytic/macrophage.
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spelling pubmed-41237812014-10-01 The PYRIN domain-only protein POP3 inhibits AIM2-like receptor inflammasomes and regulates responses to DNA virus infections Khare, Sonal Ratsimandresy, Rojo A. de Almeida, Lúcia Cuda, Carla M. Rellick, Stephanie L. Misharin, Alexander V. Wallin, Melissa C. Gangopadhyay, Anu Forte, Eleonora Gottwein, Eva Perlman, Harris Reed, John C. Greaves, David R. Dorfleutner, Andrea Stehlik, Christian Nat Immunol Article The innate immune system responds to infections and tissue damage by activating cytosolic sensory complexes called inflammasomes. Cytosolic DNA is sensed by AIM2-like receptors (ALRs) during bacterial and viral infections and in autoimmune diseases. Subsequently, recruitment of the adaptor protein ASC links ALRs to the activation of caspase-1. A controlled immune response is crucial for maintaining homeostasis, but ALR inflammasome regulation is poorly understood. Here, we identified the PYRIN domain (PYD)-only protein 3 (POP3), which competes with ASC for recruitment to ALRs, as an inhibitor of DNA virus-induced ALR inflammasome activation in vivo. Using a mouse model with macrophage-specific POP3 expression, the data emphasizes the importance of ALR inflammasome regulation in the monocytic/macrophage. 2014-02-16 2014-04 /pmc/articles/PMC4123781/ /pubmed/24531343 http://dx.doi.org/10.1038/ni.2829 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Khare, Sonal
Ratsimandresy, Rojo A.
de Almeida, Lúcia
Cuda, Carla M.
Rellick, Stephanie L.
Misharin, Alexander V.
Wallin, Melissa C.
Gangopadhyay, Anu
Forte, Eleonora
Gottwein, Eva
Perlman, Harris
Reed, John C.
Greaves, David R.
Dorfleutner, Andrea
Stehlik, Christian
The PYRIN domain-only protein POP3 inhibits AIM2-like receptor inflammasomes and regulates responses to DNA virus infections
title The PYRIN domain-only protein POP3 inhibits AIM2-like receptor inflammasomes and regulates responses to DNA virus infections
title_full The PYRIN domain-only protein POP3 inhibits AIM2-like receptor inflammasomes and regulates responses to DNA virus infections
title_fullStr The PYRIN domain-only protein POP3 inhibits AIM2-like receptor inflammasomes and regulates responses to DNA virus infections
title_full_unstemmed The PYRIN domain-only protein POP3 inhibits AIM2-like receptor inflammasomes and regulates responses to DNA virus infections
title_short The PYRIN domain-only protein POP3 inhibits AIM2-like receptor inflammasomes and regulates responses to DNA virus infections
title_sort pyrin domain-only protein pop3 inhibits aim2-like receptor inflammasomes and regulates responses to dna virus infections
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4123781/
https://www.ncbi.nlm.nih.gov/pubmed/24531343
http://dx.doi.org/10.1038/ni.2829
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