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E4BP4 通过抑制铁调素来调节铁稳态,从而促进甲状腺癌的增殖。

E4BP4 promotes thyroid cancer proliferation by modulating iron homeostasis through repression of hepcidin.

机构信息

Department of Head and Neck Surgery, Renji Hospital, School of Medicine, Shanghai Jiaotong University, Shanghai, China.

出版信息

Cell Death Dis. 2018 Sep 24;9(10):987. doi: 10.1038/s41419-018-1001-3.

Abstract

Iron homeostasis is critical to mammals, and dysregulation in iron homeostasis usually leads to severe disorders including various cancers. Massive hepcidin secretion is an indicator of thyroid cancer, but the molecular mechanisms responsible for this dysregulation are unknown. Hepcidin secretion from thyroid cancer cells also leads to decreased expression of the iron exporter, ferroportin (FPN), and increased intracellular iron retention, which promote cancer proliferation. In this study, we examined the role of hepcidin in thyroid cancer (TC) and the molecular bases of its signaling. Synthesis of hepcidin is regulated by the BMP4/7 agonist SOSTDC1, which was downregulated in TC; SOSTDC1 downregulation was correlated with G9a-mediated hypermethylation in its promoter. The binding of G9a to the SOSTDC1 promoter requires E4BP4, which interacts with G9a to form a multi-molecular complex that contributes to SOSTDC1 silencing. Silencing of E4BP4 or G9a has similar effects to SOSTDC1 overexpression, which suppresses secretion of hepcidin and inhibits TC cell proliferation. Furthermore, our in vivo xenograft data indicated that depletion of E4BP4 also inhibits cancer growth, reduces hepcidin secretion, and reduces G9a nuclear transportation. Iron homeostasis and tumor growth in TC may be regulated by an E4BP4-dependent epigenetic mechanism. These findings suggest a new mechanism of cellular iron dysfunction through the E4BP4/G9a/SOSTDC1/hepcidin pathway, which is an essential link in TC.

摘要

铁稳态对哺乳动物至关重要,铁稳态失调通常会导致严重疾病,包括各种癌症。大量的铁调素分泌是甲状腺癌的一个指标,但导致这种失调的分子机制尚不清楚。甲状腺癌细胞中铁调素的分泌也导致铁输出蛋白(FPN)的表达下调和细胞内铁的蓄积增加,从而促进癌症的增殖。在这项研究中,我们研究了铁调素在甲状腺癌(TC)中的作用及其信号转导的分子基础。铁调素的合成受 BMP4/7 激动剂 SOSTDC1 的调节,而 SOSTDC1 在 TC 中下调;SOSTDC1 的下调与 G9a 介导的其启动子超甲基化有关。G9a 与 SOSTDC1 启动子的结合需要 E4BP4,E4BP4 与 G9a 相互作用形成一个多分子复合物,有助于 SOSTDC1 的沉默。沉默 E4BP4 或 G9a 与 SOSTDC1 过表达具有相似的效果,可抑制铁调素的分泌并抑制 TC 细胞的增殖。此外,我们的体内异种移植数据表明,E4BP4 的耗竭也抑制了癌症的生长,减少了铁调素的分泌,并减少了 G9a 的核运输。TC 中的铁稳态和肿瘤生长可能受 E4BP4 依赖性表观遗传机制的调节。这些发现提示了通过 E4BP4/G9a/SOSTDC1/铁调素途径导致细胞铁功能障碍的新机制,该途径是 TC 的一个重要环节。

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