ATF3 在抑制缺血/再灌注损伤的小鼠心脏中铁死亡中的新功能。

A novel function of ATF3 in suppression of ferroptosis in mouse heart suffered ischemia/reperfusion.

机构信息

Department of Cardiology, Heart Center, Zhujiang Hospital, Southern Medical University, Guangdong, China; Laboratory of Heart Center, Zhujiang Hospital, Southern Medical University, Guangdong, China; Guangdong Provincial Key Laboratory of Shock and Microcirculation, Southern Medical University, Guangdong, China.

Department of Pathophysiology, Zhuhai Campus of Zunyi Medical University, Zhuhai, China.

出版信息

Free Radic Biol Med. 2022 Aug 20;189:122-135. doi: 10.1016/j.freeradbiomed.2022.07.006. Epub 2022 Jul 14.

Abstract

INTRODUCTION

Ferroptosis, a newly identified type of programmed cell death type, has been proven to contribute to the progression of myocardial ischemia/reperfusion (I/R) injury. However, little is known about ferroptosis regulation in I/R injury.

OBJECTIVES

We identified activating transcription factor 3 (ATF3) as a vital regulator of I/R induced ferroptosis and investigated the effects and potential mechanism of ATF3 in cardiac ferroptosis.

METHODS

In this study, the dynamic RNA-sequencing (RNA-seq) analysis were performed on mouse hearts exposed to different I/R schedules to identify that ATF3 represents an important modulatory molecule in myocardial I/R injury. Then knockout, rescue and overexpression methods were used in mice and neonatal mouse cells (NMCs) to illustrate the effect of ATF3 on myocardial I/R injury. Loss/gain of function techniques were used both in vivo and in vitro to explore the effects of ATF3 on ferroptosis in I/R injury. Furthermore, chromatin immunoprecipitation sequence (ChIP-seq) analysis was performed in the AC16 human cardiomyocyte cell line to investigate potential genes regulated by ATF3.

RESULTS

ATF3 expression reached highest level at early stage of reperfusion, knockout of ATF3 significantly aggravated I/R injury, which could be rescued by ATF3 re-expression. Knockout and the re-expression of ATF3 changed the transcription levels of multiple ferroptosis genes. In addition, results showed that overexpression of ATF3 inhibits cardiomyocyte ferroptosis triggered by erastin and RSL3. Lastly, ChIP-seq and dual luciferase activity analysis revealed ATF3 could bind to the transcription start site of Fanconi anaemia complementation group D2 (FANCD2) and increased the FANCD2 promoter activity. Furthermore, we first demonstrated that overexpression of FANCD2 exerts significant anti-ferroptosis and cardioprotective effect on AC16 cell H/R injury.

CONCLUSION

ATF3 inhibits cardiomyocyte ferroptotic death in I/R injury, which might be related with regulating FANCD2. Our study provides new insight into the molecular target for the therapy of myocardial I/R injury.

摘要

简介

铁死亡是一种新发现的程序性细胞死亡类型,已被证明会促进心肌缺血/再灌注(I/R)损伤的进展。然而,对于 I/R 损伤中铁死亡的调控机制知之甚少。

目的

我们发现激活转录因子 3(ATF3)是 I/R 诱导铁死亡的重要调节因子,并研究了 ATF3 在心脏铁死亡中的作用和潜在机制。

方法

本研究对暴露于不同 I/R 方案的小鼠心脏进行了动态 RNA 测序(RNA-seq)分析,以确定 ATF3 是心肌 I/R 损伤中的重要调节分子。然后在小鼠和新生小鼠细胞(NMCs)中使用敲除、拯救和过表达方法来阐明 ATF3 对心肌 I/R 损伤的影响。在体内和体外均使用失活/激活功能技术来研究 ATF3 对 I/R 损伤中铁死亡的影响。此外,在 AC16 人心肌细胞系中进行染色质免疫沉淀测序(ChIP-seq)分析,以研究受 ATF3 调控的潜在基因。

结果

ATF3 的表达在再灌注早期达到最高水平,ATF3 敲除显著加重了 I/R 损伤,而过表达 ATF3 可挽救其损伤。ATF3 的敲除和过表达改变了多个铁死亡基因的转录水平。此外,研究结果表明,过表达 ATF3 可抑制由 erastin 和 RSL3 触发的心肌细胞铁死亡。最后,ChIP-seq 和双荧光素酶活性分析表明,ATF3 可与范可尼贫血互补组 D2(FANCD2)的转录起始位点结合,并增加 FANCD2 启动子活性。此外,我们首次证明,过表达 FANCD2 对 AC16 细胞 H/R 损伤具有显著的抗铁死亡和心脏保护作用。

结论

ATF3 抑制 I/R 损伤中心肌细胞的铁死亡死亡,这可能与调节 FANCD2 有关。我们的研究为心肌 I/R 损伤的治疗提供了新的分子靶点。

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