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The tetrapeptide sequence of IL-1β regulates its recruitment and activation by inflammatory caspases

The mammalian innate immune system uses germline-encoded cytosolic pattern-recognition receptors (PRRs) to detect intracellular danger signals. At least six of these PRRs are known to form multiprotein complexes called inflammasomes which activate cysteine proteases known as caspases. Canonical infl...

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Autores principales: Exconde, Patrick M., Hernandez-Chavez, Claudia, Bray, Mark B., Lopez, Jan L., Srivastava, Tamanna, Egan, Marisa S., Zhang, Jenna, Shin, Sunny, Discher, Bohdana M., Taabazuing, Cornelius Y.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9949112/
https://www.ncbi.nlm.nih.gov/pubmed/36824844
http://dx.doi.org/10.1101/2023.02.16.528859
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author Exconde, Patrick M.
Hernandez-Chavez, Claudia
Bray, Mark B.
Lopez, Jan L.
Srivastava, Tamanna
Egan, Marisa S.
Zhang, Jenna
Shin, Sunny
Discher, Bohdana M.
Taabazuing, Cornelius Y.
author_facet Exconde, Patrick M.
Hernandez-Chavez, Claudia
Bray, Mark B.
Lopez, Jan L.
Srivastava, Tamanna
Egan, Marisa S.
Zhang, Jenna
Shin, Sunny
Discher, Bohdana M.
Taabazuing, Cornelius Y.
author_sort Exconde, Patrick M.
collection PubMed
description The mammalian innate immune system uses germline-encoded cytosolic pattern-recognition receptors (PRRs) to detect intracellular danger signals. At least six of these PRRs are known to form multiprotein complexes called inflammasomes which activate cysteine proteases known as caspases. Canonical inflammasomes recruit and activate caspase-1 (CASP1), which in turn cleaves and activates inflammatory cytokines such as IL-1β and IL-18, as well as the pore forming protein, gasdermin D (GSDMD), to induce pyroptotic cell death. In contrast, non-canonical inflammasomes, caspases-4/−5 (CASP4/5) in humans and caspase-11 (CASP11) in mice, are activated by intracellular LPS to cleave GSDMD, but their role in direct processing of inflammatory cytokines has not been established. Here we show that active CASP4/5 directly cleave IL-18 to generate the active species. Surprisingly, we also discovered that CASP4/5/11 cleave IL-1β at D27 to generate a 27 kDa fragment that is predicted to be inactive and cannot signal to the IL-1 receptor. Mechanistically, we discovered that the sequence identity of the P4-P1 tetrapeptide sequence adjacent to the caspase cleavage site (D116) regulates the recruitment and processing of IL-1β by inflammatory caspases to generate the bioactive species. Thus, we have identified new substrates of the non-canonical inflammasomes and reveal key mechanistic details regulating inflammation.
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spelling pubmed-99491122023-02-24 The tetrapeptide sequence of IL-1β regulates its recruitment and activation by inflammatory caspases Exconde, Patrick M. Hernandez-Chavez, Claudia Bray, Mark B. Lopez, Jan L. Srivastava, Tamanna Egan, Marisa S. Zhang, Jenna Shin, Sunny Discher, Bohdana M. Taabazuing, Cornelius Y. bioRxiv Article The mammalian innate immune system uses germline-encoded cytosolic pattern-recognition receptors (PRRs) to detect intracellular danger signals. At least six of these PRRs are known to form multiprotein complexes called inflammasomes which activate cysteine proteases known as caspases. Canonical inflammasomes recruit and activate caspase-1 (CASP1), which in turn cleaves and activates inflammatory cytokines such as IL-1β and IL-18, as well as the pore forming protein, gasdermin D (GSDMD), to induce pyroptotic cell death. In contrast, non-canonical inflammasomes, caspases-4/−5 (CASP4/5) in humans and caspase-11 (CASP11) in mice, are activated by intracellular LPS to cleave GSDMD, but their role in direct processing of inflammatory cytokines has not been established. Here we show that active CASP4/5 directly cleave IL-18 to generate the active species. Surprisingly, we also discovered that CASP4/5/11 cleave IL-1β at D27 to generate a 27 kDa fragment that is predicted to be inactive and cannot signal to the IL-1 receptor. Mechanistically, we discovered that the sequence identity of the P4-P1 tetrapeptide sequence adjacent to the caspase cleavage site (D116) regulates the recruitment and processing of IL-1β by inflammatory caspases to generate the bioactive species. Thus, we have identified new substrates of the non-canonical inflammasomes and reveal key mechanistic details regulating inflammation. Cold Spring Harbor Laboratory 2023-02-16 /pmc/articles/PMC9949112/ /pubmed/36824844 http://dx.doi.org/10.1101/2023.02.16.528859 Text en https://creativecommons.org/licenses/by-nd/4.0/This work is licensed under a Creative Commons Attribution-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, and only so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Exconde, Patrick M.
Hernandez-Chavez, Claudia
Bray, Mark B.
Lopez, Jan L.
Srivastava, Tamanna
Egan, Marisa S.
Zhang, Jenna
Shin, Sunny
Discher, Bohdana M.
Taabazuing, Cornelius Y.
The tetrapeptide sequence of IL-1β regulates its recruitment and activation by inflammatory caspases
title The tetrapeptide sequence of IL-1β regulates its recruitment and activation by inflammatory caspases
title_full The tetrapeptide sequence of IL-1β regulates its recruitment and activation by inflammatory caspases
title_fullStr The tetrapeptide sequence of IL-1β regulates its recruitment and activation by inflammatory caspases
title_full_unstemmed The tetrapeptide sequence of IL-1β regulates its recruitment and activation by inflammatory caspases
title_short The tetrapeptide sequence of IL-1β regulates its recruitment and activation by inflammatory caspases
title_sort tetrapeptide sequence of il-1β regulates its recruitment and activation by inflammatory caspases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9949112/
https://www.ncbi.nlm.nih.gov/pubmed/36824844
http://dx.doi.org/10.1101/2023.02.16.528859
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