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Signal Transduction by a Fungal NOD-Like Receptor Based on Propagation of a Prion Amyloid Fold

In the fungus Podospora anserina, the [Het-s] prion induces programmed cell death by activating the HET-S pore-forming protein. The HET-s β-solenoid prion fold serves as a template for converting the HET-S prion-forming domain into the same fold. This conversion, in turn, activates the HET-S pore-fo...

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Autores principales: Daskalov, Asen, Habenstein, Birgit, Martinez, Denis, Debets, Alfons J. M., Sabaté, Raimon, Loquet, Antoine, Saupe, Sven J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4344463/
https://www.ncbi.nlm.nih.gov/pubmed/25671553
http://dx.doi.org/10.1371/journal.pbio.1002059
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author Daskalov, Asen
Habenstein, Birgit
Martinez, Denis
Debets, Alfons J. M.
Sabaté, Raimon
Loquet, Antoine
Saupe, Sven J.
author_facet Daskalov, Asen
Habenstein, Birgit
Martinez, Denis
Debets, Alfons J. M.
Sabaté, Raimon
Loquet, Antoine
Saupe, Sven J.
author_sort Daskalov, Asen
collection PubMed
description In the fungus Podospora anserina, the [Het-s] prion induces programmed cell death by activating the HET-S pore-forming protein. The HET-s β-solenoid prion fold serves as a template for converting the HET-S prion-forming domain into the same fold. This conversion, in turn, activates the HET-S pore-forming domain. The gene immediately adjacent to het-S encodes NWD2, a Nod-like receptor (NLR) with an N-terminal motif similar to the elementary repeat unit of the β-solenoid fold. NLRs are immune receptors controlling cell death and host defense processes in animals, plants and fungi. We have proposed that, analogously to [Het-s], NWD2 can activate the HET-S pore-forming protein by converting its prion-forming region into the β-solenoid fold. Here, we analyze the ability of NWD2 to induce formation of the β-solenoid prion fold. We show that artificial NWD2 variants induce formation of the [Het-s] prion, specifically in presence of their cognate ligands. The N-terminal motif is responsible for this prion induction, and mutations predicted to affect the β-solenoid fold abolish templating activity. In vitro, the N-terminal motif assembles into infectious prion amyloids that display a structure resembling the β-solenoid fold. In vivo, the assembled form of the NWD2 N-terminal region activates the HET-S pore-forming protein. This study documenting the role of the β-solenoid fold in fungal NLR function further highlights the general importance of amyloid and prion-like signaling in immunity-related cell fate pathways.
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spelling pubmed-43444632015-03-04 Signal Transduction by a Fungal NOD-Like Receptor Based on Propagation of a Prion Amyloid Fold Daskalov, Asen Habenstein, Birgit Martinez, Denis Debets, Alfons J. M. Sabaté, Raimon Loquet, Antoine Saupe, Sven J. PLoS Biol Research Article In the fungus Podospora anserina, the [Het-s] prion induces programmed cell death by activating the HET-S pore-forming protein. The HET-s β-solenoid prion fold serves as a template for converting the HET-S prion-forming domain into the same fold. This conversion, in turn, activates the HET-S pore-forming domain. The gene immediately adjacent to het-S encodes NWD2, a Nod-like receptor (NLR) with an N-terminal motif similar to the elementary repeat unit of the β-solenoid fold. NLRs are immune receptors controlling cell death and host defense processes in animals, plants and fungi. We have proposed that, analogously to [Het-s], NWD2 can activate the HET-S pore-forming protein by converting its prion-forming region into the β-solenoid fold. Here, we analyze the ability of NWD2 to induce formation of the β-solenoid prion fold. We show that artificial NWD2 variants induce formation of the [Het-s] prion, specifically in presence of their cognate ligands. The N-terminal motif is responsible for this prion induction, and mutations predicted to affect the β-solenoid fold abolish templating activity. In vitro, the N-terminal motif assembles into infectious prion amyloids that display a structure resembling the β-solenoid fold. In vivo, the assembled form of the NWD2 N-terminal region activates the HET-S pore-forming protein. This study documenting the role of the β-solenoid fold in fungal NLR function further highlights the general importance of amyloid and prion-like signaling in immunity-related cell fate pathways. Public Library of Science 2015-02-11 /pmc/articles/PMC4344463/ /pubmed/25671553 http://dx.doi.org/10.1371/journal.pbio.1002059 Text en © 2015 Daskalov 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
Daskalov, Asen
Habenstein, Birgit
Martinez, Denis
Debets, Alfons J. M.
Sabaté, Raimon
Loquet, Antoine
Saupe, Sven J.
Signal Transduction by a Fungal NOD-Like Receptor Based on Propagation of a Prion Amyloid Fold
title Signal Transduction by a Fungal NOD-Like Receptor Based on Propagation of a Prion Amyloid Fold
title_full Signal Transduction by a Fungal NOD-Like Receptor Based on Propagation of a Prion Amyloid Fold
title_fullStr Signal Transduction by a Fungal NOD-Like Receptor Based on Propagation of a Prion Amyloid Fold
title_full_unstemmed Signal Transduction by a Fungal NOD-Like Receptor Based on Propagation of a Prion Amyloid Fold
title_short Signal Transduction by a Fungal NOD-Like Receptor Based on Propagation of a Prion Amyloid Fold
title_sort signal transduction by a fungal nod-like receptor based on propagation of a prion amyloid fold
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4344463/
https://www.ncbi.nlm.nih.gov/pubmed/25671553
http://dx.doi.org/10.1371/journal.pbio.1002059
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