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Quantitative proteomic analyses reveal that GPX4 downregulation during myocardial infarction contributes to ferroptosis in cardiomyocytes

Cell Death and Disease · 2019 · Vol. 10(11) · pp. 835–835
Tae Jun ParkJei Hyoung ParkGa Seul LeeJi-Yoon LeeJi Hye ShinMin Wook KimYong Sook KimJeong‐Yoon KimKyoung‐Jin OhBaek-Soo HanWon Kon KimYoungkeun AhnJeong Hee MoonJaewhan SongKwang‐Hee BaeDo Han KimEun‐Woo LeeSang Chul Lee

Abstract

Ischaemic heart disease (IHD) is the leading cause of death worldwide. Although myocardial cell death plays a significant role in myocardial infarction (MI), its underlying mechanism remains to be elucidated. To understand the progression of MI and identify potential therapeutic targets, we performed tandem mass tag (TMT)-based quantitative proteomic analysis using an MI mouse model. Gene ontology (GO) analysis and gene set enrichment analysis (GSEA) revealed that the glutathione metabolic pathway and reactive oxygen species (ROS) pathway were significantly downregulated during MI. In particular, glutathione peroxidase 4 (GPX4), which protects cells from ferroptosis (an iron-dependent programme of regulated necrosis), was downregulated in the early and middle stages of MI. RNA-seq and qRT-PCR analyses suggested that GPX4 downregulation occurred at the transcriptional level. Depletion or inhibition of GPX4 using specific siRNA or the chemical inhibitor RSL3, respectively, resulted in the accumulation of lipid peroxide, leading to cell death by ferroptosis in H9c2 cardiomyoblasts. Although neonatal rat ventricular myocytes (NRVMs) were less sensitive to GPX4 inhibition than H9c2 cells, NRVMs rapidly underwent ferroptosis in response to GPX4 inhibition under cysteine deprivation. Our study suggests that downregulation of GPX4 during MI contributes to ferroptotic cell death in cardiomyocytes upon metabolic stress such as cysteine deprivation.

Ferroptosis and cancer prognosisCancer-related molecular mechanisms researchCancer, Lipids, and MetabolismDownregulation and upregulationGPX4Cell biologyMyocardial infarctionChemistryBiologyOxidative stressInternal medicineMedicineBiochemistry

MeSH terms

FerroptosisPhospholipid Hydroperoxide Glutathione PeroxidaseAnimalsCell LineHumansMyocardial InfarctionDown-RegulationGene Expression Regulation, EnzymologicRats, Sprague-DawleyMyocytes, CardiacProteomicsRats

Funding

  • National Research Foundation
  • Ministry of Science, ICT and Future Planning
  • Korea Research Institute of Bioscience and Biotechnology
  • National Research Foundation of Korea
  • Institute for Basic Science
  • Ministry of Science and ICT, South Korea
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Quantitative proteomic analyses reveal that GPX4 downregulation during myocardial infarction contributes to ferroptosis in cardiomyocytes · Scinovex