H3K9 trimethylation dictates neuronal ferroptosis through repressing Tfr1

Author:

Lan Ting1,Hu Liye1,Sun Tingting1,Wang Xuechun2,Xiao Zhongnan1,Shen Danmin1,Wu Weihua1,Luo Zhaoli1,Wei Chao3,Wang Xiaotong3,Liu Meng3,Guo Yi2,Wang Liyong4,Wang Yamei1ORCID,Lu Yabin1,Yu Yan567,Yang Fei38,Zhang Chenguang19,Li Qian189

Affiliation:

1. Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences, Capital Medical University, Beijing, China

2. School of Basic Medical Sciences, Capital Medical University, Beijing, China

3. Department of Neurobiology, School of Basic Medical Sciences, Capital Medical University, Beijing, China

4. Core Facilities for Molecular Biology, Capital Medical University, Beijing, China

5. Chinese Institute of Rehabilitation Science, China Rehabilitation Science Institute, Beijing, China

6. Beijing Key Laboratory of Neural Injury and Rehabilitation, China Rehabilitation Research Center, Beijing, China

7. School of Rehabilitation Medicine, Capital Medical University, Beijing, China

8. Advanced Innovation Center for Human Brain Protection, Beijing Key Laboratory of Neural Regeneration and Repair, Capital Medical University, Beijing, China

9. Beijing Key Laboratory of Cancer Invasion and Metastasis Research, Capital Medical University, Beijing, China

Abstract

Spontaneous intracerebral hemorrhage (ICH) is a devastating disease with high morbidity and mortality worldwide. We have previously shown that ferroptosis contributes to neuronal loss in ICH mice. The overload of iron and dysfunction of glutathione peroxidase 4 (GPx4) promote neuronal ferroptosis post-ICH. However, how epigenetic regulatory mechanisms affect the ferroptotic neurons in ICH remains unclear. In the current study, hemin was used to induce ferroptosis in N2A and SK-N-SH neuronal cells to mimic ICH. The results showed that hemin-induced ferroptosis was accompanied by an increment of global level of trimethylation in histone 3 lysine 9 (H3K9me3) and its methyltransferase Suv39h1. Transcriptional target analyses indicated that H3K9me3 was enriched at the promoter region and gene body of transferrin receptor gene 1 ( Tfr1) and repressed its expression upon hemin stimulation. Inhibition of H3K9me3 with inhibitor or siRNA against Suv39h1 aggravated hemin- and RSL3-induced ferroptosis by upregulating Tfr1 expression. Furthermore, Suv39h1-H3K9me3 mediated repression of Tfr1 contributes to the progression of ICH in mice. These data suggest a protective role of H3K9me3 in ferroptosis post ICH. The knowledge gained from this study will improve the understanding of epigenetic regulation in neuronal ferroptosis and shed light on future clinical research after ICH.

Publisher

SAGE Publications

Subject

Cardiology and Cardiovascular Medicine,Neurology (clinical),Neurology

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