Cargando…

TRPM2 Mediates Hepatic Ischemia–Reperfusion Injury via Ca(2+)-Induced Mitochondrial Lipid Peroxidation through Increasing ALOX12 Expression

Hepatic ischemia–reperfusion (IR) injury is a serious clinical problem that complicates liver resection and transplantation. Despite recent advances in understanding of the pathophysiology of hepatic IR injury, effective interventions and therapeutics are still lacking. Here, we examined the role of...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhong, Cheng, Yang, Jing, Zhang, Yiyin, Fan, Xiaoxiao, Fan, Yang, Hua, Ning, Li, Duguang, Jin, Shengxi, Li, Yirun, Chen, Peng, Chen, Yongle, Cai, Xiaobo, Zhang, Yi, Jiang, Linhua, Yang, Wei, Yu, Peilin, Lin, Hui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10232356/
https://www.ncbi.nlm.nih.gov/pubmed/37275121
http://dx.doi.org/10.34133/research.0159
_version_ 1785051958317416448
author Zhong, Cheng
Yang, Jing
Zhang, Yiyin
Fan, Xiaoxiao
Fan, Yang
Hua, Ning
Li, Duguang
Jin, Shengxi
Li, Yirun
Chen, Peng
Chen, Yongle
Cai, Xiaobo
Zhang, Yi
Jiang, Linhua
Yang, Wei
Yu, Peilin
Lin, Hui
author_facet Zhong, Cheng
Yang, Jing
Zhang, Yiyin
Fan, Xiaoxiao
Fan, Yang
Hua, Ning
Li, Duguang
Jin, Shengxi
Li, Yirun
Chen, Peng
Chen, Yongle
Cai, Xiaobo
Zhang, Yi
Jiang, Linhua
Yang, Wei
Yu, Peilin
Lin, Hui
author_sort Zhong, Cheng
collection PubMed
description Hepatic ischemia–reperfusion (IR) injury is a serious clinical problem that complicates liver resection and transplantation. Despite recent advances in understanding of the pathophysiology of hepatic IR injury, effective interventions and therapeutics are still lacking. Here, we examined the role of transient receptor potential melastatin 2 (TRPM2), a Ca(2+)-permeable, non-selective cation channel, in mediating hepatic IR injury. Our data showed that TRPM2 deficiency attenuated IR-induced liver dysfunction, inflammation, and cell death in mice. Moreover, RNA sequencing analysis indicated that TRPM2-induced IR injury occurs via ferroptosis-related pathways. Consistently, as a ferroptosis inducer, (1S,3R)-RSL3 treatment induced mitochondrial dysfunction in hepatocytes and a TRPM2 inhibitor suppressed this. Interestingly, TRPM2-mediated calcium influx caused mitochondrial calcium accumulation via the mitochondrial Ca(2+)-selective uniporter and increased the expression level of arachidonate 12-lipoxygenase (ALOX12), which results in mitochondrial lipid peroxidation during hepatic IR injury. Furthermore, hepatic IR injury-induced ferroptosis was obviously relieved by a TRPM2 inhibitor or calcium depletion, both in vitro and in vivo. Collectively, these findings demonstrate a crucial role for TRPM2-mediated ferroptosis in hepatic IR injury via increased Ca(2+)-induced ALOX12 expression, indicating that pharmacological inhibition of TRPM2 may provide an effective therapeutic strategy for hepatic IR injury-related diseases, such as during liver resection and transplantation.
format Online
Article
Text
id pubmed-10232356
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher AAAS
record_format MEDLINE/PubMed
spelling pubmed-102323562023-06-02 TRPM2 Mediates Hepatic Ischemia–Reperfusion Injury via Ca(2+)-Induced Mitochondrial Lipid Peroxidation through Increasing ALOX12 Expression Zhong, Cheng Yang, Jing Zhang, Yiyin Fan, Xiaoxiao Fan, Yang Hua, Ning Li, Duguang Jin, Shengxi Li, Yirun Chen, Peng Chen, Yongle Cai, Xiaobo Zhang, Yi Jiang, Linhua Yang, Wei Yu, Peilin Lin, Hui Research (Wash D C) Research Article Hepatic ischemia–reperfusion (IR) injury is a serious clinical problem that complicates liver resection and transplantation. Despite recent advances in understanding of the pathophysiology of hepatic IR injury, effective interventions and therapeutics are still lacking. Here, we examined the role of transient receptor potential melastatin 2 (TRPM2), a Ca(2+)-permeable, non-selective cation channel, in mediating hepatic IR injury. Our data showed that TRPM2 deficiency attenuated IR-induced liver dysfunction, inflammation, and cell death in mice. Moreover, RNA sequencing analysis indicated that TRPM2-induced IR injury occurs via ferroptosis-related pathways. Consistently, as a ferroptosis inducer, (1S,3R)-RSL3 treatment induced mitochondrial dysfunction in hepatocytes and a TRPM2 inhibitor suppressed this. Interestingly, TRPM2-mediated calcium influx caused mitochondrial calcium accumulation via the mitochondrial Ca(2+)-selective uniporter and increased the expression level of arachidonate 12-lipoxygenase (ALOX12), which results in mitochondrial lipid peroxidation during hepatic IR injury. Furthermore, hepatic IR injury-induced ferroptosis was obviously relieved by a TRPM2 inhibitor or calcium depletion, both in vitro and in vivo. Collectively, these findings demonstrate a crucial role for TRPM2-mediated ferroptosis in hepatic IR injury via increased Ca(2+)-induced ALOX12 expression, indicating that pharmacological inhibition of TRPM2 may provide an effective therapeutic strategy for hepatic IR injury-related diseases, such as during liver resection and transplantation. AAAS 2023-05-31 /pmc/articles/PMC10232356/ /pubmed/37275121 http://dx.doi.org/10.34133/research.0159 Text en Copyright © 2023 Cheng Zhong et al. https://creativecommons.org/licenses/by/4.0/Exclusive licensee Science and Technology Review Publishing House. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution License (CC BY 4.0) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Zhong, Cheng
Yang, Jing
Zhang, Yiyin
Fan, Xiaoxiao
Fan, Yang
Hua, Ning
Li, Duguang
Jin, Shengxi
Li, Yirun
Chen, Peng
Chen, Yongle
Cai, Xiaobo
Zhang, Yi
Jiang, Linhua
Yang, Wei
Yu, Peilin
Lin, Hui
TRPM2 Mediates Hepatic Ischemia–Reperfusion Injury via Ca(2+)-Induced Mitochondrial Lipid Peroxidation through Increasing ALOX12 Expression
title TRPM2 Mediates Hepatic Ischemia–Reperfusion Injury via Ca(2+)-Induced Mitochondrial Lipid Peroxidation through Increasing ALOX12 Expression
title_full TRPM2 Mediates Hepatic Ischemia–Reperfusion Injury via Ca(2+)-Induced Mitochondrial Lipid Peroxidation through Increasing ALOX12 Expression
title_fullStr TRPM2 Mediates Hepatic Ischemia–Reperfusion Injury via Ca(2+)-Induced Mitochondrial Lipid Peroxidation through Increasing ALOX12 Expression
title_full_unstemmed TRPM2 Mediates Hepatic Ischemia–Reperfusion Injury via Ca(2+)-Induced Mitochondrial Lipid Peroxidation through Increasing ALOX12 Expression
title_short TRPM2 Mediates Hepatic Ischemia–Reperfusion Injury via Ca(2+)-Induced Mitochondrial Lipid Peroxidation through Increasing ALOX12 Expression
title_sort trpm2 mediates hepatic ischemia–reperfusion injury via ca(2+)-induced mitochondrial lipid peroxidation through increasing alox12 expression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10232356/
https://www.ncbi.nlm.nih.gov/pubmed/37275121
http://dx.doi.org/10.34133/research.0159
work_keys_str_mv AT zhongcheng trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT yangjing trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT zhangyiyin trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT fanxiaoxiao trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT fanyang trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT huaning trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT liduguang trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT jinshengxi trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT liyirun trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT chenpeng trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT chenyongle trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT caixiaobo trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT zhangyi trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT jianglinhua trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT yangwei trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT yupeilin trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression
AT linhui trpm2mediateshepaticischemiareperfusioninjuryviaca2inducedmitochondriallipidperoxidationthroughincreasingalox12expression