Cargando…

The PRAK-NRF2 axis promotes the differentiation of Th17 cells by mediating the redox homeostasis and glycolysis

Oxidative stress is a key feature in both chronic inflammation and cancer. P38 regulated/activated protein kinase (PRAK) deficiency can cause functional disorders in neutrophils and macrophages under high oxidative stress, but the precise mechanisms by which PRAK regulates reactive oxygen species (R...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhao, Ziheng, Wang, Yan, Gao, Yuhan, Ju, Yurong, Zhao, Ye, Wu, Zhaofei, Gao, Shuaixin, Zhang, Boyang, Pang, Xuewen, Zhang, Yu, Wang, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10175746/
https://www.ncbi.nlm.nih.gov/pubmed/37126714
http://dx.doi.org/10.1073/pnas.2212613120
_version_ 1785040277851865088
author Zhao, Ziheng
Wang, Yan
Gao, Yuhan
Ju, Yurong
Zhao, Ye
Wu, Zhaofei
Gao, Shuaixin
Zhang, Boyang
Pang, Xuewen
Zhang, Yu
Wang, Wei
author_facet Zhao, Ziheng
Wang, Yan
Gao, Yuhan
Ju, Yurong
Zhao, Ye
Wu, Zhaofei
Gao, Shuaixin
Zhang, Boyang
Pang, Xuewen
Zhang, Yu
Wang, Wei
author_sort Zhao, Ziheng
collection PubMed
description Oxidative stress is a key feature in both chronic inflammation and cancer. P38 regulated/activated protein kinase (PRAK) deficiency can cause functional disorders in neutrophils and macrophages under high oxidative stress, but the precise mechanisms by which PRAK regulates reactive oxygen species (ROS) elimination and its potential impact on CD4+ T helper subset function are unclear. The present study reveals that the PRAK-NF-E2-related factor 2(NRF2) axis is essential for maintaining the intracellular redox homeostasis of T helper 17(Th17) cells, thereby promoting Th17 cell differentiation and antitumor effects. Through mechanistic analysis, we identify NRF2 as a novel protein substrate of PRAK and find that PRAK enhances the stability of the NRF2 protein through phosphorylation NRF2 Serine(S) 558 independent of protein ubiquitination. High accumulation of cellular ROS caused by loss of PRAK disrupts both glycolysis and PKM2-dependent phosphorylation of STAT3, which subsequently impairs the differentiation of Th17 cells. As a result, Prak knockout (KO) mice display significant resistance to experimental autoimmune encephalomyelitis (EAE) but impaired antitumor immunity in a MC38 tumor model. This work reveals that the PRAK-NRF2-mediated antioxidant pathway is a metabolic checkpoint that controls Th17-cell glycolysis and differentiation. Targeting PRAK is a promising strategy for maintaining an active ROS scavenging system and may lead to potent Th17 cell antitumor immunity.
format Online
Article
Text
id pubmed-10175746
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-101757462023-11-01 The PRAK-NRF2 axis promotes the differentiation of Th17 cells by mediating the redox homeostasis and glycolysis Zhao, Ziheng Wang, Yan Gao, Yuhan Ju, Yurong Zhao, Ye Wu, Zhaofei Gao, Shuaixin Zhang, Boyang Pang, Xuewen Zhang, Yu Wang, Wei Proc Natl Acad Sci U S A Biological Sciences Oxidative stress is a key feature in both chronic inflammation and cancer. P38 regulated/activated protein kinase (PRAK) deficiency can cause functional disorders in neutrophils and macrophages under high oxidative stress, but the precise mechanisms by which PRAK regulates reactive oxygen species (ROS) elimination and its potential impact on CD4+ T helper subset function are unclear. The present study reveals that the PRAK-NF-E2-related factor 2(NRF2) axis is essential for maintaining the intracellular redox homeostasis of T helper 17(Th17) cells, thereby promoting Th17 cell differentiation and antitumor effects. Through mechanistic analysis, we identify NRF2 as a novel protein substrate of PRAK and find that PRAK enhances the stability of the NRF2 protein through phosphorylation NRF2 Serine(S) 558 independent of protein ubiquitination. High accumulation of cellular ROS caused by loss of PRAK disrupts both glycolysis and PKM2-dependent phosphorylation of STAT3, which subsequently impairs the differentiation of Th17 cells. As a result, Prak knockout (KO) mice display significant resistance to experimental autoimmune encephalomyelitis (EAE) but impaired antitumor immunity in a MC38 tumor model. This work reveals that the PRAK-NRF2-mediated antioxidant pathway is a metabolic checkpoint that controls Th17-cell glycolysis and differentiation. Targeting PRAK is a promising strategy for maintaining an active ROS scavenging system and may lead to potent Th17 cell antitumor immunity. National Academy of Sciences 2023-05-01 2023-05-09 /pmc/articles/PMC10175746/ /pubmed/37126714 http://dx.doi.org/10.1073/pnas.2212613120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Zhao, Ziheng
Wang, Yan
Gao, Yuhan
Ju, Yurong
Zhao, Ye
Wu, Zhaofei
Gao, Shuaixin
Zhang, Boyang
Pang, Xuewen
Zhang, Yu
Wang, Wei
The PRAK-NRF2 axis promotes the differentiation of Th17 cells by mediating the redox homeostasis and glycolysis
title The PRAK-NRF2 axis promotes the differentiation of Th17 cells by mediating the redox homeostasis and glycolysis
title_full The PRAK-NRF2 axis promotes the differentiation of Th17 cells by mediating the redox homeostasis and glycolysis
title_fullStr The PRAK-NRF2 axis promotes the differentiation of Th17 cells by mediating the redox homeostasis and glycolysis
title_full_unstemmed The PRAK-NRF2 axis promotes the differentiation of Th17 cells by mediating the redox homeostasis and glycolysis
title_short The PRAK-NRF2 axis promotes the differentiation of Th17 cells by mediating the redox homeostasis and glycolysis
title_sort prak-nrf2 axis promotes the differentiation of th17 cells by mediating the redox homeostasis and glycolysis
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10175746/
https://www.ncbi.nlm.nih.gov/pubmed/37126714
http://dx.doi.org/10.1073/pnas.2212613120
work_keys_str_mv AT zhaoziheng thepraknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT wangyan thepraknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT gaoyuhan thepraknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT juyurong thepraknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT zhaoye thepraknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT wuzhaofei thepraknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT gaoshuaixin thepraknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT zhangboyang thepraknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT pangxuewen thepraknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT zhangyu thepraknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT wangwei thepraknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT zhaoziheng praknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT wangyan praknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT gaoyuhan praknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT juyurong praknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT zhaoye praknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT wuzhaofei praknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT gaoshuaixin praknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT zhangboyang praknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT pangxuewen praknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT zhangyu praknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis
AT wangwei praknrf2axispromotesthedifferentiationofth17cellsbymediatingtheredoxhomeostasisandglycolysis