FSP1 Acts in Parallel with GPX4 to Inhibit Ferroptosis in COPD.

IF 5.9 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Yue Yang, Weiyu Shen, Zheming Zhang, Youai Dai, Zixiao Zhang, Tingting Liu, Jinyan Yu, Shulun Huang, Yu Ding, Rong You, Ziteng Wang, Yan Wu, Tao Bian
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Abstract

Glutathione peroxidase 4 (GPX4) has recently been reported to play an important role in the pathogenesis of chronic obstructive pulmonary disease (COPD). Ferroptosis suppressor protein-1 (FSP1) is a protein that defends against ferroptosis in parallel with GPX4, but its role in the pathogenesis of COPD remains unexplored, and further research is needed. Normal and COPD lung tissues were obtained from lobectomy and lung transplant specimens, respectively. FSP1-overexpressing mice were established by monthly transfection with AAV9-FSP1 through modified intranasal administration. The expression of FSP1, GPX4, and prostaglandin-endoperoxide synthase 2 (PTGS2) was measured by Western blotting, immunohistochemistry and other methods. The correlation between FSP1 and ferroptosis and the role of FSP1 in COPD were explored by screening the expression of ferroptosis-related genes in a COPD cell model after the inhibition and overexpression of FSP1. We then explored the underlying mechanism of low FSP1 expression in patients with COPD in vitro by methylated RNA immunoprecipitation (MeRIP)-qPCR. We found that cigarette smoke exposure can lead to an increase in lipid peroxide production and ultimately ferroptosis, which is negatively regulated by FSP1 activity. FSP1 overexpression can prevent ferroptosis and alleviate emphysema. Next, we found that decreased FSP1 expression was caused by increased m6A modification of FSP1 mRNA. Moreover, the level of FSP1 decreased in a YTHDF2-dependent manner. These results indicate that METTL3-induced FSP1 mRNA methylation leading to low FSP1 expression is a potential therapeutic target for COPD. This article is open access and distributed under the terms of the Creative Commons Attribution Non-Commercial No Derivatives License 4.0 (http://creativecommons.org/licenses/by-nc-nd/4.0/).

FSP1 与 GPX4 并行抑制慢性阻塞性肺病中的铁氧化作用
最近有报道称,谷胱甘肽过氧化物酶 4(GPX4)在慢性阻塞性肺病(COPD)的发病机制中起着重要作用。铁变态反应抑制蛋白-1(FSP1)是一种与 GPX4 同时抵御铁变态反应的蛋白,但它在慢性阻塞性肺病发病机制中的作用仍有待进一步研究。正常肺组织和慢性阻塞性肺病肺组织分别取自肺叶切除术和肺移植标本。通过改良鼻内给药每月转染 AAV9-FSP1 建立 FSP1 外表达小鼠。通过 Western 印迹、免疫组化等方法检测了 FSP1、GPX4 和前列腺素内过氧化物合成酶 2(PTGS2)的表达。通过筛选 FSP1 抑制和过表达后 COPD 细胞模型中铁败相关基因的表达情况,探讨了 FSP1 与铁败坏之间的相关性以及 FSP1 在 COPD 中的作用。然后,我们通过甲基化 RNA 免疫沉淀(MeRIP)-qPCR 技术探讨了慢性阻塞性肺病患者体内 FSP1 低表达的潜在机制。我们发现,香烟烟雾暴露可导致过氧化脂质生成增加,最终导致铁变态反应,而铁变态反应受 FSP1 活性的负调控。FSP1 的过表达可以防止铁蜕变,缓解肺气肿。接下来,我们发现 FSP1 mRNA 的 m6A 修饰增加导致 FSP1 表达量减少。此外,FSP1水平的降低还与YTHDF2有关。这些结果表明,METTL3诱导的FSP1 mRNA甲基化导致的FSP1低表达是慢性阻塞性肺病的潜在治疗靶点。本文根据知识共享署名非商业性无衍生品许可 4.0 (http://creativecommons.org/licenses/by-nc-nd/4.0/) 条款开放获取和发布。
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来源期刊
CiteScore
11.20
自引率
3.10%
发文量
370
审稿时长
3-8 weeks
期刊介绍: The American Journal of Respiratory Cell and Molecular Biology publishes papers that report significant and original observations in the area of pulmonary biology. The focus of the Journal includes, but is not limited to, cellular, biochemical, molecular, developmental, genetic, and immunologic studies of lung cells and molecules.
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