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Nanobodies dismantle post‐pyroptotic ASC specks and counteract inflammation in vivo

Inflammasomes sense intracellular clues of infection, damage, or metabolic imbalances. Activated inflammasome sensors polymerize the adaptor ASC into micron‐sized “specks” to maximize caspase‐1 activation and the maturation of IL‐1 cytokines. Caspase‐1 also drives pyroptosis, a lytic cell death char...

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Autores principales: Bertheloot, Damien, Wanderley, Carlos WS, Schneider, Ayda H, Schiffelers, Lisa DJ, Wuerth, Jennifer D, Tödtmann, Jan MP, Maasewerd, Salie, Hawwari, Ibrahim, Duthie, Fraser, Rohland, Cornelia, Ribeiro, Lucas S, Jenster, Lea‐Marie, Rosero, Nathalia, Tesfamariam, Yonas M, Cunha, Fernando Q, Schmidt, Florian I, Franklin, Bernardo S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9174887/
https://www.ncbi.nlm.nih.gov/pubmed/35438238
http://dx.doi.org/10.15252/emmm.202115415
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author Bertheloot, Damien
Wanderley, Carlos WS
Schneider, Ayda H
Schiffelers, Lisa DJ
Wuerth, Jennifer D
Tödtmann, Jan MP
Maasewerd, Salie
Hawwari, Ibrahim
Duthie, Fraser
Rohland, Cornelia
Ribeiro, Lucas S
Jenster, Lea‐Marie
Rosero, Nathalia
Tesfamariam, Yonas M
Cunha, Fernando Q
Schmidt, Florian I
Franklin, Bernardo S
author_facet Bertheloot, Damien
Wanderley, Carlos WS
Schneider, Ayda H
Schiffelers, Lisa DJ
Wuerth, Jennifer D
Tödtmann, Jan MP
Maasewerd, Salie
Hawwari, Ibrahim
Duthie, Fraser
Rohland, Cornelia
Ribeiro, Lucas S
Jenster, Lea‐Marie
Rosero, Nathalia
Tesfamariam, Yonas M
Cunha, Fernando Q
Schmidt, Florian I
Franklin, Bernardo S
author_sort Bertheloot, Damien
collection PubMed
description Inflammasomes sense intracellular clues of infection, damage, or metabolic imbalances. Activated inflammasome sensors polymerize the adaptor ASC into micron‐sized “specks” to maximize caspase‐1 activation and the maturation of IL‐1 cytokines. Caspase‐1 also drives pyroptosis, a lytic cell death characterized by leakage of intracellular content to the extracellular space. ASC specks are released among cytosolic content, and accumulate in tissues of patients with chronic inflammation. However, if extracellular ASC specks contribute to disease, or are merely inert remnants of cell death remains unknown. Here, we show that camelid‐derived nanobodies against ASC (VHH(ASC)) target and disassemble post‐pyroptotic inflammasomes, neutralizing their prionoid, and inflammatory functions. Notably, pyroptosis‐driven membrane perforation and exposure of ASC specks to the extracellular environment allowed VHH(ASC) to target inflammasomes while preserving pre‐pyroptotic IL‐1β release, essential to host defense. Systemically administrated mouse‐specific VHH(ASC) attenuated inflammation and clinical gout, and antigen‐induced arthritis disease. Hence, VHH(ASC) neutralized post‐pyroptotic inflammasomes revealing a previously unappreciated role for these complexes in disease. VHH(ASC) are the first biologicals that disassemble pre‐formed inflammasomes while preserving their functions in host defense.
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spelling pubmed-91748872022-06-13 Nanobodies dismantle post‐pyroptotic ASC specks and counteract inflammation in vivo Bertheloot, Damien Wanderley, Carlos WS Schneider, Ayda H Schiffelers, Lisa DJ Wuerth, Jennifer D Tödtmann, Jan MP Maasewerd, Salie Hawwari, Ibrahim Duthie, Fraser Rohland, Cornelia Ribeiro, Lucas S Jenster, Lea‐Marie Rosero, Nathalia Tesfamariam, Yonas M Cunha, Fernando Q Schmidt, Florian I Franklin, Bernardo S EMBO Mol Med Articles Inflammasomes sense intracellular clues of infection, damage, or metabolic imbalances. Activated inflammasome sensors polymerize the adaptor ASC into micron‐sized “specks” to maximize caspase‐1 activation and the maturation of IL‐1 cytokines. Caspase‐1 also drives pyroptosis, a lytic cell death characterized by leakage of intracellular content to the extracellular space. ASC specks are released among cytosolic content, and accumulate in tissues of patients with chronic inflammation. However, if extracellular ASC specks contribute to disease, or are merely inert remnants of cell death remains unknown. Here, we show that camelid‐derived nanobodies against ASC (VHH(ASC)) target and disassemble post‐pyroptotic inflammasomes, neutralizing their prionoid, and inflammatory functions. Notably, pyroptosis‐driven membrane perforation and exposure of ASC specks to the extracellular environment allowed VHH(ASC) to target inflammasomes while preserving pre‐pyroptotic IL‐1β release, essential to host defense. Systemically administrated mouse‐specific VHH(ASC) attenuated inflammation and clinical gout, and antigen‐induced arthritis disease. Hence, VHH(ASC) neutralized post‐pyroptotic inflammasomes revealing a previously unappreciated role for these complexes in disease. VHH(ASC) are the first biologicals that disassemble pre‐formed inflammasomes while preserving their functions in host defense. John Wiley and Sons Inc. 2022-04-19 /pmc/articles/PMC9174887/ /pubmed/35438238 http://dx.doi.org/10.15252/emmm.202115415 Text en © 2022 The Authors. Published under the terms of the CC BY 4.0 license https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Bertheloot, Damien
Wanderley, Carlos WS
Schneider, Ayda H
Schiffelers, Lisa DJ
Wuerth, Jennifer D
Tödtmann, Jan MP
Maasewerd, Salie
Hawwari, Ibrahim
Duthie, Fraser
Rohland, Cornelia
Ribeiro, Lucas S
Jenster, Lea‐Marie
Rosero, Nathalia
Tesfamariam, Yonas M
Cunha, Fernando Q
Schmidt, Florian I
Franklin, Bernardo S
Nanobodies dismantle post‐pyroptotic ASC specks and counteract inflammation in vivo
title Nanobodies dismantle post‐pyroptotic ASC specks and counteract inflammation in vivo
title_full Nanobodies dismantle post‐pyroptotic ASC specks and counteract inflammation in vivo
title_fullStr Nanobodies dismantle post‐pyroptotic ASC specks and counteract inflammation in vivo
title_full_unstemmed Nanobodies dismantle post‐pyroptotic ASC specks and counteract inflammation in vivo
title_short Nanobodies dismantle post‐pyroptotic ASC specks and counteract inflammation in vivo
title_sort nanobodies dismantle post‐pyroptotic asc specks and counteract inflammation in vivo
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9174887/
https://www.ncbi.nlm.nih.gov/pubmed/35438238
http://dx.doi.org/10.15252/emmm.202115415
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