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IL-1β-activated mTORC2 promotes accumulation of IFN-γ(+) γδ T cells by upregulating CXCR3 to restrict hepatic fibrosis

Liver fibrosis represents a severe stage of liver damage, with hallmarks of inflammation, hepatic stellate cell activation, and extracellular matrix accumulation. Although previous studies demonstrated γδ T cells are involved in liver fibrosis, the precise role and mechanisms of γδ T cells migrating...

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Autores principales: Liu, Qihui, Yang, Quanli, Wu, Zengfeng, Chen, Yanfang, Xu, Miaomiao, Zhang, Hua, Zhao, Jiliang, Liu, Zonghua, Guan, Zerong, Luo, Jing, Li, Zhi-yong, Sun, Guodong, Wen, Qiong, Xu, Yan, Li, Zhenhua, Chen, Kebing, Ben, Xiaosong, He, Wanchun, Li, Xueshi, Yin, Zhinan, Hao, Jianlei, Lu, Ligong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971410/
https://www.ncbi.nlm.nih.gov/pubmed/35361750
http://dx.doi.org/10.1038/s41419-022-04739-3
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author Liu, Qihui
Yang, Quanli
Wu, Zengfeng
Chen, Yanfang
Xu, Miaomiao
Zhang, Hua
Zhao, Jiliang
Liu, Zonghua
Guan, Zerong
Luo, Jing
Li, Zhi-yong
Sun, Guodong
Wen, Qiong
Xu, Yan
Li, Zhenhua
Chen, Kebing
Ben, Xiaosong
He, Wanchun
Li, Xueshi
Yin, Zhinan
Hao, Jianlei
Lu, Ligong
author_facet Liu, Qihui
Yang, Quanli
Wu, Zengfeng
Chen, Yanfang
Xu, Miaomiao
Zhang, Hua
Zhao, Jiliang
Liu, Zonghua
Guan, Zerong
Luo, Jing
Li, Zhi-yong
Sun, Guodong
Wen, Qiong
Xu, Yan
Li, Zhenhua
Chen, Kebing
Ben, Xiaosong
He, Wanchun
Li, Xueshi
Yin, Zhinan
Hao, Jianlei
Lu, Ligong
author_sort Liu, Qihui
collection PubMed
description Liver fibrosis represents a severe stage of liver damage, with hallmarks of inflammation, hepatic stellate cell activation, and extracellular matrix accumulation. Although previous studies demonstrated γδ T cells are involved in liver fibrosis, the precise role and mechanisms of γδ T cells migrating to fibrotic liver have not been elucidated. Here, we aim to investigate the functional subsets of γδ T cells in hepatic fibrosis and to further explore the underlying causes and drivers of migration. In this study, we observed that γδ T cells accumulate in fibrotic liver. Adoptive transfer of γδ T, especially Vγ4 γδ T subset, can significantly alleviate liver fibrosis. In addition, CCl(4) treatment also leads to activation of mTOR signaling in γδ T cells. Genetic deletion of the Rictor gene, but not Raptor, in γδ T cells markedly exacerbated liver fibrosis. Mechanistically, CCl(4)-induced liver injury causes macrophage accumulation in the liver, and IL-1β produced by macrophages promotes mTORC2 signaling activation in γδ T cells, which upregulates T-bet expression and eventually promotes CXCR3 transcription to drive γδ T cell migration. Moreover, hepatic γδ T cells ameliorated liver fibrosis by cytotoxicity against activated hepatic stellate cells in FasL-dependent manner, and secrete IFN-γ to inhibit the differentiation of pro-fibrotic Th17 cells. Thus, IL-1β-activated mTORC2 signaling in γδ T cells upregulates CXCR3 expression, which is critical for IFN-γ(+) γδ T cells migration into the liver and amelioration of liver fibrosis. Our findings indicate that targeting the mTORC2 or CXCR3 in γδ T cells could be considered as a promising approach for γδ T cell immunotherapy against liver fibrosis.
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spelling pubmed-89714102022-04-20 IL-1β-activated mTORC2 promotes accumulation of IFN-γ(+) γδ T cells by upregulating CXCR3 to restrict hepatic fibrosis Liu, Qihui Yang, Quanli Wu, Zengfeng Chen, Yanfang Xu, Miaomiao Zhang, Hua Zhao, Jiliang Liu, Zonghua Guan, Zerong Luo, Jing Li, Zhi-yong Sun, Guodong Wen, Qiong Xu, Yan Li, Zhenhua Chen, Kebing Ben, Xiaosong He, Wanchun Li, Xueshi Yin, Zhinan Hao, Jianlei Lu, Ligong Cell Death Dis Article Liver fibrosis represents a severe stage of liver damage, with hallmarks of inflammation, hepatic stellate cell activation, and extracellular matrix accumulation. Although previous studies demonstrated γδ T cells are involved in liver fibrosis, the precise role and mechanisms of γδ T cells migrating to fibrotic liver have not been elucidated. Here, we aim to investigate the functional subsets of γδ T cells in hepatic fibrosis and to further explore the underlying causes and drivers of migration. In this study, we observed that γδ T cells accumulate in fibrotic liver. Adoptive transfer of γδ T, especially Vγ4 γδ T subset, can significantly alleviate liver fibrosis. In addition, CCl(4) treatment also leads to activation of mTOR signaling in γδ T cells. Genetic deletion of the Rictor gene, but not Raptor, in γδ T cells markedly exacerbated liver fibrosis. Mechanistically, CCl(4)-induced liver injury causes macrophage accumulation in the liver, and IL-1β produced by macrophages promotes mTORC2 signaling activation in γδ T cells, which upregulates T-bet expression and eventually promotes CXCR3 transcription to drive γδ T cell migration. Moreover, hepatic γδ T cells ameliorated liver fibrosis by cytotoxicity against activated hepatic stellate cells in FasL-dependent manner, and secrete IFN-γ to inhibit the differentiation of pro-fibrotic Th17 cells. Thus, IL-1β-activated mTORC2 signaling in γδ T cells upregulates CXCR3 expression, which is critical for IFN-γ(+) γδ T cells migration into the liver and amelioration of liver fibrosis. Our findings indicate that targeting the mTORC2 or CXCR3 in γδ T cells could be considered as a promising approach for γδ T cell immunotherapy against liver fibrosis. Nature Publishing Group UK 2022-04-01 /pmc/articles/PMC8971410/ /pubmed/35361750 http://dx.doi.org/10.1038/s41419-022-04739-3 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Liu, Qihui
Yang, Quanli
Wu, Zengfeng
Chen, Yanfang
Xu, Miaomiao
Zhang, Hua
Zhao, Jiliang
Liu, Zonghua
Guan, Zerong
Luo, Jing
Li, Zhi-yong
Sun, Guodong
Wen, Qiong
Xu, Yan
Li, Zhenhua
Chen, Kebing
Ben, Xiaosong
He, Wanchun
Li, Xueshi
Yin, Zhinan
Hao, Jianlei
Lu, Ligong
IL-1β-activated mTORC2 promotes accumulation of IFN-γ(+) γδ T cells by upregulating CXCR3 to restrict hepatic fibrosis
title IL-1β-activated mTORC2 promotes accumulation of IFN-γ(+) γδ T cells by upregulating CXCR3 to restrict hepatic fibrosis
title_full IL-1β-activated mTORC2 promotes accumulation of IFN-γ(+) γδ T cells by upregulating CXCR3 to restrict hepatic fibrosis
title_fullStr IL-1β-activated mTORC2 promotes accumulation of IFN-γ(+) γδ T cells by upregulating CXCR3 to restrict hepatic fibrosis
title_full_unstemmed IL-1β-activated mTORC2 promotes accumulation of IFN-γ(+) γδ T cells by upregulating CXCR3 to restrict hepatic fibrosis
title_short IL-1β-activated mTORC2 promotes accumulation of IFN-γ(+) γδ T cells by upregulating CXCR3 to restrict hepatic fibrosis
title_sort il-1β-activated mtorc2 promotes accumulation of ifn-γ(+) γδ t cells by upregulating cxcr3 to restrict hepatic fibrosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971410/
https://www.ncbi.nlm.nih.gov/pubmed/35361750
http://dx.doi.org/10.1038/s41419-022-04739-3
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