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Association of Tim-3/Gal-9 Axis with NLRC4 Inflammasome in Glioma Malignancy: Tim-3/Gal-9 Induce the NLRC4 Inflammasome

Tim-3/Gal-9 and the NLRC4 inflammasome contribute to glioma progression. However, the underlying mechanisms involved are unclear. Here, we observed that Tim-3/Gal-9 expression increased with glioma malignancy and found that Tim-3/Gal-9 regulate NLRC4 inflammasome formation and activation. Tim-3/Gal-...

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Autores principales: Sim, JeongMin, Park, JeongMan, Kim, Suwan, Hwang, Sojung, Sung, KyoungSu, Lee, Jung-Eun, Yang, SeungHo, Cho, Kyunggi, Lee, SungHwan, Moon, Jong-Seok, Ahn, JuWon, Lim, Jaejoon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8878774/
https://www.ncbi.nlm.nih.gov/pubmed/35216164
http://dx.doi.org/10.3390/ijms23042028
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author Sim, JeongMin
Park, JeongMan
Kim, Suwan
Hwang, Sojung
Sung, KyoungSu
Lee, Jung-Eun
Yang, SeungHo
Cho, Kyunggi
Lee, SungHwan
Moon, Jong-Seok
Ahn, JuWon
Lim, Jaejoon
author_facet Sim, JeongMin
Park, JeongMan
Kim, Suwan
Hwang, Sojung
Sung, KyoungSu
Lee, Jung-Eun
Yang, SeungHo
Cho, Kyunggi
Lee, SungHwan
Moon, Jong-Seok
Ahn, JuWon
Lim, Jaejoon
author_sort Sim, JeongMin
collection PubMed
description Tim-3/Gal-9 and the NLRC4 inflammasome contribute to glioma progression. However, the underlying mechanisms involved are unclear. Here, we observed that Tim-3/Gal-9 expression increased with glioma malignancy and found that Tim-3/Gal-9 regulate NLRC4 inflammasome formation and activation. Tim-3/Gal-9 and NLRC4 inflammasome-related molecule expression levels increased with WHO glioma grade, and this association was correlated with low survival. We investigated NLRC4 inflammasome formation by genetically regulating Tim-3 and its ligand Gal-9. Tim-3/Gal-9 regulation was positively correlated with the NLRC4 inflammasome, NLRC4, and caspase-1 expression. Tim-3/Gal-9 did not trigger IL-1β secretion but were strongly positively correlated with caspase-1 activity as they induced programmed cell death in glioma cells. A protein–protein interaction analysis revealed that the FYN-JAK1-ZNF384 pathways are bridges in NLRC4 inflammasome regulation by Tim-3/Gal-9. The present study showed that Tim-3/Gal-9 are associated with poor prognosis in glioma patients and induce NLRC4 inflammasome formation and activation. We proposed that a Tim-3/Gal-9 blockade could be beneficial in glioma therapy as it would reduce the inflammatory microenvironment by downregulating the NLRC4 inflammasome.
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spelling pubmed-88787742022-02-26 Association of Tim-3/Gal-9 Axis with NLRC4 Inflammasome in Glioma Malignancy: Tim-3/Gal-9 Induce the NLRC4 Inflammasome Sim, JeongMin Park, JeongMan Kim, Suwan Hwang, Sojung Sung, KyoungSu Lee, Jung-Eun Yang, SeungHo Cho, Kyunggi Lee, SungHwan Moon, Jong-Seok Ahn, JuWon Lim, Jaejoon Int J Mol Sci Article Tim-3/Gal-9 and the NLRC4 inflammasome contribute to glioma progression. However, the underlying mechanisms involved are unclear. Here, we observed that Tim-3/Gal-9 expression increased with glioma malignancy and found that Tim-3/Gal-9 regulate NLRC4 inflammasome formation and activation. Tim-3/Gal-9 and NLRC4 inflammasome-related molecule expression levels increased with WHO glioma grade, and this association was correlated with low survival. We investigated NLRC4 inflammasome formation by genetically regulating Tim-3 and its ligand Gal-9. Tim-3/Gal-9 regulation was positively correlated with the NLRC4 inflammasome, NLRC4, and caspase-1 expression. Tim-3/Gal-9 did not trigger IL-1β secretion but were strongly positively correlated with caspase-1 activity as they induced programmed cell death in glioma cells. A protein–protein interaction analysis revealed that the FYN-JAK1-ZNF384 pathways are bridges in NLRC4 inflammasome regulation by Tim-3/Gal-9. The present study showed that Tim-3/Gal-9 are associated with poor prognosis in glioma patients and induce NLRC4 inflammasome formation and activation. We proposed that a Tim-3/Gal-9 blockade could be beneficial in glioma therapy as it would reduce the inflammatory microenvironment by downregulating the NLRC4 inflammasome. MDPI 2022-02-12 /pmc/articles/PMC8878774/ /pubmed/35216164 http://dx.doi.org/10.3390/ijms23042028 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sim, JeongMin
Park, JeongMan
Kim, Suwan
Hwang, Sojung
Sung, KyoungSu
Lee, Jung-Eun
Yang, SeungHo
Cho, Kyunggi
Lee, SungHwan
Moon, Jong-Seok
Ahn, JuWon
Lim, Jaejoon
Association of Tim-3/Gal-9 Axis with NLRC4 Inflammasome in Glioma Malignancy: Tim-3/Gal-9 Induce the NLRC4 Inflammasome
title Association of Tim-3/Gal-9 Axis with NLRC4 Inflammasome in Glioma Malignancy: Tim-3/Gal-9 Induce the NLRC4 Inflammasome
title_full Association of Tim-3/Gal-9 Axis with NLRC4 Inflammasome in Glioma Malignancy: Tim-3/Gal-9 Induce the NLRC4 Inflammasome
title_fullStr Association of Tim-3/Gal-9 Axis with NLRC4 Inflammasome in Glioma Malignancy: Tim-3/Gal-9 Induce the NLRC4 Inflammasome
title_full_unstemmed Association of Tim-3/Gal-9 Axis with NLRC4 Inflammasome in Glioma Malignancy: Tim-3/Gal-9 Induce the NLRC4 Inflammasome
title_short Association of Tim-3/Gal-9 Axis with NLRC4 Inflammasome in Glioma Malignancy: Tim-3/Gal-9 Induce the NLRC4 Inflammasome
title_sort association of tim-3/gal-9 axis with nlrc4 inflammasome in glioma malignancy: tim-3/gal-9 induce the nlrc4 inflammasome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8878774/
https://www.ncbi.nlm.nih.gov/pubmed/35216164
http://dx.doi.org/10.3390/ijms23042028
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