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HSF1 promotes CD69(+) Treg differentiation to inhibit colitis progression

Regulatory T cells (Tregs) are critical for generating and maintaining peripheral tolerance. Treg-based immunotherapy is valuable for the clinical management of diseases resulting from dysregulation of immune tolerance. However, the lack of potency is a potential limitation of Treg therapy. In addit...

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Autores principales: Yu, Lei, Zhou, Bingluo, Zhu, Yiran, Li, Ling, Zhong, Yiming, Zhu, Liyuan, Wang, Hanying, Chen, Hui, Xu, Jinye, Guo, Tianxin, Feng, Lifeng, Wang, Xian, Cai, Zhijian, Wang, Jianli, Jin, Hongchuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10091886/
https://www.ncbi.nlm.nih.gov/pubmed/37064870
http://dx.doi.org/10.7150/thno.78078
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author Yu, Lei
Zhou, Bingluo
Zhu, Yiran
Li, Ling
Zhong, Yiming
Zhu, Liyuan
Wang, Hanying
Chen, Hui
Xu, Jinye
Guo, Tianxin
Feng, Lifeng
Wang, Xian
Cai, Zhijian
Wang, Jianli
Jin, Hongchuan
author_facet Yu, Lei
Zhou, Bingluo
Zhu, Yiran
Li, Ling
Zhong, Yiming
Zhu, Liyuan
Wang, Hanying
Chen, Hui
Xu, Jinye
Guo, Tianxin
Feng, Lifeng
Wang, Xian
Cai, Zhijian
Wang, Jianli
Jin, Hongchuan
author_sort Yu, Lei
collection PubMed
description Regulatory T cells (Tregs) are critical for generating and maintaining peripheral tolerance. Treg-based immunotherapy is valuable for the clinical management of diseases resulting from dysregulation of immune tolerance. However, the lack of potency is a potential limitation of Treg therapy. In addition, CD69 positive-Treg (CD69(+) Treg) represent a newly identified subset of Tregs with potent immune suppressive capability. Methods: Foxp3(YFP-Cre)CD69(fl/fl) and CD4(Cre)CD69(fl/fl) mice were generated to determine the relevance of CD69 to Treg. Chromatin Immunoprecipitation Assay (ChIP) and luciferase Assay were performed to detect the regulation of CD69 transcription by heat shock transcription factor 1(HSF1). Gene expression was measured by western blotting and qRT-PCR. The differentiation of naive T cells to CD69(+)Foxp3(+) iTregs was determined by flow cytometry. The immunosuppressive ability of Tregs was analyzed by ELISA and flow cytometry. Colon inflammation in mice was reflected by changes in body weight and colon length, the disease activity index (DAI), and H&E staining of colon tissues. Results: Induced Tregs (iTregs) from CD4(Cre)CD69(fl/fl) mice failed to alleviate colitis. The transcription factor HSF1 interacted with the promoter of the CD69 gene to prompt its transcription during Treg differentiation. Genetic and chemical inhibition of HSF1 impaired CD69(+) Treg differentiation and promoted the pathogenesis of colitis in mice. In contrast, HSF1 protein stabilized by inhibiting its proteasomal degradation promoted CD69(+) Treg differentiation and alleviated colitis in mice. Moreover, adoptive transfer of iTregs with HSF1 stabilization by proteasome inhibitor (PSI) dramatically prevented the development of colitis in mice and was accompanied by decreased production of pro-inflammatory cytokines and reduced accumulation of pro-inflammatory lymphocytes in colitis tissue, whereas Tregs induced in the absence of PSI were less stable and ineffective in suppressing colitis. Conclusions: HSF1 promotes CD69(+) Tregs differentiation by activating the CD69 transcription, which is critical for the immunosuppressive function of Tregs. Stabilization of HSF1 by PSIs results in the efficient generation of Tregs with high potency to treat colitis and probably other autoimmune diseases involving Tregs deficiency.
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spelling pubmed-100918862023-04-13 HSF1 promotes CD69(+) Treg differentiation to inhibit colitis progression Yu, Lei Zhou, Bingluo Zhu, Yiran Li, Ling Zhong, Yiming Zhu, Liyuan Wang, Hanying Chen, Hui Xu, Jinye Guo, Tianxin Feng, Lifeng Wang, Xian Cai, Zhijian Wang, Jianli Jin, Hongchuan Theranostics Research Paper Regulatory T cells (Tregs) are critical for generating and maintaining peripheral tolerance. Treg-based immunotherapy is valuable for the clinical management of diseases resulting from dysregulation of immune tolerance. However, the lack of potency is a potential limitation of Treg therapy. In addition, CD69 positive-Treg (CD69(+) Treg) represent a newly identified subset of Tregs with potent immune suppressive capability. Methods: Foxp3(YFP-Cre)CD69(fl/fl) and CD4(Cre)CD69(fl/fl) mice were generated to determine the relevance of CD69 to Treg. Chromatin Immunoprecipitation Assay (ChIP) and luciferase Assay were performed to detect the regulation of CD69 transcription by heat shock transcription factor 1(HSF1). Gene expression was measured by western blotting and qRT-PCR. The differentiation of naive T cells to CD69(+)Foxp3(+) iTregs was determined by flow cytometry. The immunosuppressive ability of Tregs was analyzed by ELISA and flow cytometry. Colon inflammation in mice was reflected by changes in body weight and colon length, the disease activity index (DAI), and H&E staining of colon tissues. Results: Induced Tregs (iTregs) from CD4(Cre)CD69(fl/fl) mice failed to alleviate colitis. The transcription factor HSF1 interacted with the promoter of the CD69 gene to prompt its transcription during Treg differentiation. Genetic and chemical inhibition of HSF1 impaired CD69(+) Treg differentiation and promoted the pathogenesis of colitis in mice. In contrast, HSF1 protein stabilized by inhibiting its proteasomal degradation promoted CD69(+) Treg differentiation and alleviated colitis in mice. Moreover, adoptive transfer of iTregs with HSF1 stabilization by proteasome inhibitor (PSI) dramatically prevented the development of colitis in mice and was accompanied by decreased production of pro-inflammatory cytokines and reduced accumulation of pro-inflammatory lymphocytes in colitis tissue, whereas Tregs induced in the absence of PSI were less stable and ineffective in suppressing colitis. Conclusions: HSF1 promotes CD69(+) Tregs differentiation by activating the CD69 transcription, which is critical for the immunosuppressive function of Tregs. Stabilization of HSF1 by PSIs results in the efficient generation of Tregs with high potency to treat colitis and probably other autoimmune diseases involving Tregs deficiency. Ivyspring International Publisher 2023-03-21 /pmc/articles/PMC10091886/ /pubmed/37064870 http://dx.doi.org/10.7150/thno.78078 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Yu, Lei
Zhou, Bingluo
Zhu, Yiran
Li, Ling
Zhong, Yiming
Zhu, Liyuan
Wang, Hanying
Chen, Hui
Xu, Jinye
Guo, Tianxin
Feng, Lifeng
Wang, Xian
Cai, Zhijian
Wang, Jianli
Jin, Hongchuan
HSF1 promotes CD69(+) Treg differentiation to inhibit colitis progression
title HSF1 promotes CD69(+) Treg differentiation to inhibit colitis progression
title_full HSF1 promotes CD69(+) Treg differentiation to inhibit colitis progression
title_fullStr HSF1 promotes CD69(+) Treg differentiation to inhibit colitis progression
title_full_unstemmed HSF1 promotes CD69(+) Treg differentiation to inhibit colitis progression
title_short HSF1 promotes CD69(+) Treg differentiation to inhibit colitis progression
title_sort hsf1 promotes cd69(+) treg differentiation to inhibit colitis progression
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10091886/
https://www.ncbi.nlm.nih.gov/pubmed/37064870
http://dx.doi.org/10.7150/thno.78078
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