Cargando…

PKM2-dependent glycolysis promotes NLRP3 and AIM2 inflammasome activation

Sepsis, severe sepsis and septic shock are the main cause of mortality in non-cardiac intensive care units. Immunometabolism has been linked to sepsis; however, the precise mechanism by which metabolic reprogramming regulates the inflammatory response is unclear. Here we show that aerobic glycolysis...

Descripción completa

Detalles Bibliográficos
Autores principales: Xie, Min, Yu, Yan, Kang, Rui, Zhu, Shan, Yang, Liangchun, Zeng, Ling, Sun, Xiaofang, Yang, Minghua, Billiar, Timothy R., Wang, Haichao, Cao, Lizhi, Jiang, Jianxin, Tang, Daolin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5093342/
https://www.ncbi.nlm.nih.gov/pubmed/27779186
http://dx.doi.org/10.1038/ncomms13280
_version_ 1782464901667618816
author Xie, Min
Yu, Yan
Kang, Rui
Zhu, Shan
Yang, Liangchun
Zeng, Ling
Sun, Xiaofang
Yang, Minghua
Billiar, Timothy R.
Wang, Haichao
Cao, Lizhi
Jiang, Jianxin
Tang, Daolin
author_facet Xie, Min
Yu, Yan
Kang, Rui
Zhu, Shan
Yang, Liangchun
Zeng, Ling
Sun, Xiaofang
Yang, Minghua
Billiar, Timothy R.
Wang, Haichao
Cao, Lizhi
Jiang, Jianxin
Tang, Daolin
author_sort Xie, Min
collection PubMed
description Sepsis, severe sepsis and septic shock are the main cause of mortality in non-cardiac intensive care units. Immunometabolism has been linked to sepsis; however, the precise mechanism by which metabolic reprogramming regulates the inflammatory response is unclear. Here we show that aerobic glycolysis contributes to sepsis by modulating inflammasome activation in macrophages. PKM2-mediated glycolysis promotes inflammasome activation by modulating EIF2AK2 phosphorylation in macrophages. Pharmacological and genetic inhibition of PKM2 or EIF2AK2 attenuates NLRP3 and AIM2 inflammasomes activation, and consequently suppresses the release of IL-1β, IL-18 and HMGB1 by macrophages. Pharmacological inhibition of the PKM2–EIF2AK2 pathway protects mice from lethal endotoxemia and polymicrobial sepsis. Moreover, conditional knockout of PKM2 in myeloid cells protects mice from septic death induced by NLRP3 and AIM2 inflammasome activation. These findings define an important role of PKM2 in immunometabolism and guide future development of therapeutic strategies to treat sepsis.
format Online
Article
Text
id pubmed-5093342
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-50933422016-11-18 PKM2-dependent glycolysis promotes NLRP3 and AIM2 inflammasome activation Xie, Min Yu, Yan Kang, Rui Zhu, Shan Yang, Liangchun Zeng, Ling Sun, Xiaofang Yang, Minghua Billiar, Timothy R. Wang, Haichao Cao, Lizhi Jiang, Jianxin Tang, Daolin Nat Commun Article Sepsis, severe sepsis and septic shock are the main cause of mortality in non-cardiac intensive care units. Immunometabolism has been linked to sepsis; however, the precise mechanism by which metabolic reprogramming regulates the inflammatory response is unclear. Here we show that aerobic glycolysis contributes to sepsis by modulating inflammasome activation in macrophages. PKM2-mediated glycolysis promotes inflammasome activation by modulating EIF2AK2 phosphorylation in macrophages. Pharmacological and genetic inhibition of PKM2 or EIF2AK2 attenuates NLRP3 and AIM2 inflammasomes activation, and consequently suppresses the release of IL-1β, IL-18 and HMGB1 by macrophages. Pharmacological inhibition of the PKM2–EIF2AK2 pathway protects mice from lethal endotoxemia and polymicrobial sepsis. Moreover, conditional knockout of PKM2 in myeloid cells protects mice from septic death induced by NLRP3 and AIM2 inflammasome activation. These findings define an important role of PKM2 in immunometabolism and guide future development of therapeutic strategies to treat sepsis. Nature Publishing Group 2016-10-25 /pmc/articles/PMC5093342/ /pubmed/27779186 http://dx.doi.org/10.1038/ncomms13280 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Xie, Min
Yu, Yan
Kang, Rui
Zhu, Shan
Yang, Liangchun
Zeng, Ling
Sun, Xiaofang
Yang, Minghua
Billiar, Timothy R.
Wang, Haichao
Cao, Lizhi
Jiang, Jianxin
Tang, Daolin
PKM2-dependent glycolysis promotes NLRP3 and AIM2 inflammasome activation
title PKM2-dependent glycolysis promotes NLRP3 and AIM2 inflammasome activation
title_full PKM2-dependent glycolysis promotes NLRP3 and AIM2 inflammasome activation
title_fullStr PKM2-dependent glycolysis promotes NLRP3 and AIM2 inflammasome activation
title_full_unstemmed PKM2-dependent glycolysis promotes NLRP3 and AIM2 inflammasome activation
title_short PKM2-dependent glycolysis promotes NLRP3 and AIM2 inflammasome activation
title_sort pkm2-dependent glycolysis promotes nlrp3 and aim2 inflammasome activation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5093342/
https://www.ncbi.nlm.nih.gov/pubmed/27779186
http://dx.doi.org/10.1038/ncomms13280
work_keys_str_mv AT xiemin pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT yuyan pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT kangrui pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT zhushan pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT yangliangchun pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT zengling pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT sunxiaofang pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT yangminghua pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT billiartimothyr pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT wanghaichao pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT caolizhi pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT jiangjianxin pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation
AT tangdaolin pkm2dependentglycolysispromotesnlrp3andaim2inflammasomeactivation