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Pyrin Modulates the Intracellular Distribution of PSTPIP1

PSTPIP1 is a cytoskeleton-associated adaptor protein that links PEST-type phosphatases to their substrates. Mutations in PSTPIP1 cause PAPA syndrome (Pyogenic sterile Arthritis, Pyoderma gangrenosum, and Acne), an autoinflammatory disease. PSTPIP1 binds to pyrin and mutations in pyrin result in fami...

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Autores principales: Waite, Andrea L., Schaner, Philip, Richards, Neil, Balci-Peynircioglu, Banu, Masters, Seth L., Brydges, Susannah D., Fox, Michelle, Hong, Arthur, Yilmaz, Engin, Kastner, Daniel L., Reinherz, Ellis L., Gumucio, Deborah L.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2702820/
https://www.ncbi.nlm.nih.gov/pubmed/19584923
http://dx.doi.org/10.1371/journal.pone.0006147
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author Waite, Andrea L.
Schaner, Philip
Richards, Neil
Balci-Peynircioglu, Banu
Masters, Seth L.
Brydges, Susannah D.
Fox, Michelle
Hong, Arthur
Yilmaz, Engin
Kastner, Daniel L.
Reinherz, Ellis L.
Gumucio, Deborah L.
author_facet Waite, Andrea L.
Schaner, Philip
Richards, Neil
Balci-Peynircioglu, Banu
Masters, Seth L.
Brydges, Susannah D.
Fox, Michelle
Hong, Arthur
Yilmaz, Engin
Kastner, Daniel L.
Reinherz, Ellis L.
Gumucio, Deborah L.
author_sort Waite, Andrea L.
collection PubMed
description PSTPIP1 is a cytoskeleton-associated adaptor protein that links PEST-type phosphatases to their substrates. Mutations in PSTPIP1 cause PAPA syndrome (Pyogenic sterile Arthritis, Pyoderma gangrenosum, and Acne), an autoinflammatory disease. PSTPIP1 binds to pyrin and mutations in pyrin result in familial Mediterranean fever (FMF), a related autoinflammatory disorder. Since disease-associated mutations in PSTPIP1 enhance pyrin binding, PAPA syndrome and FMF are thought to share a common pathoetiology. The studies outlined here describe several new aspects of PSTPIP1 and pyrin biology. We document that PSTPIP1, which has homology to membrane-deforming BAR proteins, forms homodimers and generates membrane-associated filaments in native and transfected cells. An extended FCH (Fes-Cip4 homology) domain in PSTPIP1 is necessary and sufficient for its self-aggregation. We further show that the PSTPIP1 filament network is dependent upon an intact tubulin cytoskeleton and that the distribution of this network can be modulated by pyrin, indicating that this is a dynamic structure. Finally, we demonstrate that pyrin can recruit PSTPIP1 into aggregations (specks) of ASC, another pyrin binding protein. ASC specks are associated with inflammasome activity. PSTPIP1 molecules with PAPA-associated mutations are recruited by pyrin to ASC specks with particularly high efficiency, suggesting a unique mechanism underlying the robust inflammatory phenotype of PAPA syndrome.
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spelling pubmed-27028202009-07-08 Pyrin Modulates the Intracellular Distribution of PSTPIP1 Waite, Andrea L. Schaner, Philip Richards, Neil Balci-Peynircioglu, Banu Masters, Seth L. Brydges, Susannah D. Fox, Michelle Hong, Arthur Yilmaz, Engin Kastner, Daniel L. Reinherz, Ellis L. Gumucio, Deborah L. PLoS One Research Article PSTPIP1 is a cytoskeleton-associated adaptor protein that links PEST-type phosphatases to their substrates. Mutations in PSTPIP1 cause PAPA syndrome (Pyogenic sterile Arthritis, Pyoderma gangrenosum, and Acne), an autoinflammatory disease. PSTPIP1 binds to pyrin and mutations in pyrin result in familial Mediterranean fever (FMF), a related autoinflammatory disorder. Since disease-associated mutations in PSTPIP1 enhance pyrin binding, PAPA syndrome and FMF are thought to share a common pathoetiology. The studies outlined here describe several new aspects of PSTPIP1 and pyrin biology. We document that PSTPIP1, which has homology to membrane-deforming BAR proteins, forms homodimers and generates membrane-associated filaments in native and transfected cells. An extended FCH (Fes-Cip4 homology) domain in PSTPIP1 is necessary and sufficient for its self-aggregation. We further show that the PSTPIP1 filament network is dependent upon an intact tubulin cytoskeleton and that the distribution of this network can be modulated by pyrin, indicating that this is a dynamic structure. Finally, we demonstrate that pyrin can recruit PSTPIP1 into aggregations (specks) of ASC, another pyrin binding protein. ASC specks are associated with inflammasome activity. PSTPIP1 molecules with PAPA-associated mutations are recruited by pyrin to ASC specks with particularly high efficiency, suggesting a unique mechanism underlying the robust inflammatory phenotype of PAPA syndrome. Public Library of Science 2009-07-07 /pmc/articles/PMC2702820/ /pubmed/19584923 http://dx.doi.org/10.1371/journal.pone.0006147 Text en Waite et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Waite, Andrea L.
Schaner, Philip
Richards, Neil
Balci-Peynircioglu, Banu
Masters, Seth L.
Brydges, Susannah D.
Fox, Michelle
Hong, Arthur
Yilmaz, Engin
Kastner, Daniel L.
Reinherz, Ellis L.
Gumucio, Deborah L.
Pyrin Modulates the Intracellular Distribution of PSTPIP1
title Pyrin Modulates the Intracellular Distribution of PSTPIP1
title_full Pyrin Modulates the Intracellular Distribution of PSTPIP1
title_fullStr Pyrin Modulates the Intracellular Distribution of PSTPIP1
title_full_unstemmed Pyrin Modulates the Intracellular Distribution of PSTPIP1
title_short Pyrin Modulates the Intracellular Distribution of PSTPIP1
title_sort pyrin modulates the intracellular distribution of pstpip1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2702820/
https://www.ncbi.nlm.nih.gov/pubmed/19584923
http://dx.doi.org/10.1371/journal.pone.0006147
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