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FTH通过维持铁稳态促进增殖并使肝癌细胞对铁死亡具有特异性抗性。

FTH promotes the proliferation and renders the HCC cells specifically resist to ferroptosis by maintaining iron homeostasis.

作者信息

Hu Wanye, Zhou Chaoting, Jing Qiangan, Li Yancun, Yang Jing, Yang Chen, Wang Luyang, Hu Jiayu, Li Huanjuan, Wang Hairui, Yuan Chen, Zhou Yi, Ren Xueying, Tong Xiangmin, Du Jing, Wang Ying

机构信息

Laboratory Medicine Center, Department of Laboratory Medicine, Zhejiang Provincial People's Hospital, Affiliated People's Hospital, Hangzhou Medical College, Hangzhou, 310014, Zhejiang, China.

GCP Clinical Research Center, Affiliated Hangzhou First People's Hospital, Zhejiang University School of Medicine, Hangzhou, 310006, Zhejiang, China.

出版信息

Cancer Cell Int. 2021 Dec 29;21(1):709. doi: 10.1186/s12935-021-02420-x.

Abstract

BACKGROUND

Ferroptosis is a newly identified type of programmed cell death, which preferentially targets iron-rich cancer cells such as hepatocellular carcinoma (HCC). Ferritin heavy chain (FTH) is a major iron storing nanocage to store redox-inactive iron, and harbors ferroxidase activity to prevent the iron-mediated production of ROS. Our previous studies have demonstrated that FTH acts as a protective role to increase the cellular resistance to ferroptosis. However, the specific role of FTH in the development of HCC and ferroptosis resistance remains unclear.

METHODS

The indicated databases were used for bioinformatics analysis. The abilities of cell proliferation, migration were measured by cell proliferation assay, transwell assay and wound healing assay. The levels of reactive oxygen species (ROS), lipid peroxide, free iron, mitochondrial superoxide, mitochondrial morphology and mitochondrial membrane potential (MMP) were determined by DCF-DA, C11-BODIPY, mitoSOX, mitoTracker, JC-10 and TMRM staining, respectively. The mitochondrial oxygen consumption rate was monitored by the Seahorse XF24 Analyzer.

RESULTS

The pan-cancer analysis was performed and showed that FTH expression is upregulated in multiple cancers, such as LIHC, CHOL, HNSC, compared to corresponding normal tissues. In addition, the level of serum ferritin is positively associated with the progression of hepatitis, cirrhosis liver and hepatocellular carcinoma. Further investigation shed light on the strong correlation between FTH expression and tumor grades, cancer stages and prognosis of HCC. Importantly, the proteins interaction network elucidated that FTH is involved in iron homeostasis maintenance and lysosomal-dependent degradation. Enforced expression of FTH accelerates proliferation, migration and endows HCC cells specifically resistant to ferroptosis, but does not protect against cell death caused by cytotoxic compounds like oxaliplatin, irinotecan, and adriamycin. Mechanically, FTH reconstituted cells exhibit diminished peroxides accumulation, reduce mitochondrial ROS level, attenuate the impaired mitochondrial respiratory and rescue the mitochondrial homeostasis. Notably, FTH expression boosts tumorigenic potential in vivo with increased PCNA staining and lesser lipid peroxides generation.

CONCLUSION

These results provide new insights that FTH acts as an oncogene in the carcinogenesis and progression of HCC, and is hopeful to be a potential target for therapeutic intervention through ferroptosis.

摘要

背景

铁死亡是一种新发现的程序性细胞死亡类型,它优先靶向富含铁的癌细胞,如肝细胞癌(HCC)。铁蛋白重链(FTH)是一种主要的储存氧化还原惰性铁的纳米笼,具有铁氧化酶活性以防止铁介导的活性氧生成。我们之前的研究表明,FTH起到保护作用,可增加细胞对铁死亡的抗性。然而,FTH在HCC发生发展及铁死亡抗性中的具体作用仍不清楚。

方法

使用指定数据库进行生物信息学分析。通过细胞增殖实验、Transwell实验和伤口愈合实验检测细胞增殖、迁移能力。分别用DCF-DA、C11-BODIPY、mitoSOX、mitoTracker、JC-10和TMRM染色测定活性氧(ROS)、脂质过氧化物、游离铁、线粒体超氧化物、线粒体形态和线粒体膜电位(MMP)水平。用海马XF24分析仪监测线粒体氧消耗率。

结果

进行了泛癌分析,结果显示与相应正常组织相比,FTH在多种癌症中表达上调,如肝癌(LIHC)、胆管癌(CHOL)、头颈部鳞状细胞癌(HNSC)。此外,血清铁蛋白水平与肝炎、肝硬化和肝细胞癌的进展呈正相关。进一步研究揭示了FTH表达与HCC的肿瘤分级、癌症分期及预后之间的强相关性。重要的是,蛋白质相互作用网络阐明FTH参与铁稳态维持和溶酶体依赖性降解。FTH的强制表达加速增殖、迁移,并赋予HCC细胞对铁死亡的特异性抗性,但不能保护细胞免受奥沙利铂、伊立替康和阿霉素等细胞毒性化合物引起的细胞死亡。从机制上讲,FTH重组细胞表现出过氧化物积累减少、线粒体ROS水平降低、线粒体呼吸受损减轻以及线粒体稳态得以恢复。值得注意的是,FTH表达通过增加PCNA染色和减少脂质过氧化物生成来增强体内致瘤潜力。

结论

这些结果提供了新的见解,即FTH在HCC的发生发展中起癌基因作用,有望成为通过铁死亡进行治疗干预的潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e9a/8717654/2e5cd5402420/12935_2021_2420_Fig1_HTML.jpg

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