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镉诱导大鼠肝细胞恶性转化:载脂蛋白E表达改变在增强侵袭性中的潜在关键作用及调控机制

Cadmium-induced malignant transformation of rat liver cells: Potential key role and regulatory mechanism of altered apolipoprotein E expression in enhanced invasiveness.

作者信息

Suzuki Masayo, Takeda Shuso, Teraoka-Nishitani Noriko, Yamagata Akane, Tanaka Takahiro, Sasaki Marika, Yasuda Natsuki, Oda Makiko, Okano Tatsuji, Yamahira Kazuhiro, Nakamura Yuta, Kobayashi Takanobu, Kino Katsuhito, Miyazawa Hiroshi, Waalkes Michael P, Takiguchi Masufumi

机构信息

Laboratory of Xenobiotic Metabolism and Environmental Toxicology, Faculty of Pharmaceutical Sciences, Hiroshima International University (HIU), 5-1-1 Hiro-koshingai, Kure, Hiroshima 737-0112, Japan.

Kagawa School of Pharmaceutical Sciences, Tokushima Bunri University, 1314-1, Shido, Sanuki, Kagawa 769-2193, Japan.

出版信息

Toxicology. 2017 May 1;382:16-23. doi: 10.1016/j.tox.2017.03.014. Epub 2017 Mar 16.

Abstract

Cadmium is a transition metal that is classified as human carcinogen by the International Agency for Research on Cancer (IARC) with multiple target sites. Many studies using various model systems provide evidence of cadmium-induced malignancy formation in vivo or malignant cell transformation in vitro. Nonetheless, further studies are needed to completely understand the mechanisms of cadmium carcinogenicity. Our prior studies have utilized a rat liver epithelial cell line (TRL 1215) as a model for cadmium-induced malignant transformation. In the present study, we focused on the molecular mechanisms of this malignant transformation, especially with regard to hyper-invasiveness stimulated by cadmium transformation. By performing a series of biochemical analyses on cadmium transformed cells, it was determined that cadmium had significantly down-regulated the expression of apolipoprotein E (ApoE). ApoE was recently established as a suppressor of cell invasion. A key factor in the suppression of ApoE by cadmium appeared to be that the metal evoked a 5-aza-2'-deoxycytidine-sensitive hypermethylation of the regulatory region of ApoE, coupled with interference of the action of liver X receptor α (LXRα), a transcriptional regulator for ApoE. Furthermore, the expression of LXRα itself was suppressed by cadmium-mediated epigenetic modification. Re-expression of ApoE clearly abrogated the cell invasion stimulated by cadmium-induced malignant transformation. Together, the current results suggest that the cadmium-mediated enhanced cell invasion is linked to down-regulation of ApoE during malignant transformation these liver cells.

摘要

镉是一种过渡金属,被国际癌症研究机构(IARC)列为具有多个靶位点的人类致癌物。许多使用各种模型系统的研究提供了镉在体内诱导恶性肿瘤形成或在体外诱导恶性细胞转化的证据。尽管如此,仍需要进一步研究以全面了解镉致癌的机制。我们之前的研究利用大鼠肝上皮细胞系(TRL 1215)作为镉诱导恶性转化的模型。在本研究中,我们专注于这种恶性转化的分子机制,特别是关于镉转化所刺激的高侵袭性。通过对镉转化细胞进行一系列生化分析,确定镉显著下调了载脂蛋白E(ApoE)的表达。ApoE最近被确定为细胞侵袭的抑制因子。镉抑制ApoE的一个关键因素似乎是该金属引发了ApoE调节区域的5-氮杂-2'-脱氧胞苷敏感的高甲基化,同时干扰了肝X受体α(LXRα)的作用,LXRα是ApoE的转录调节因子。此外,LXRα自身的表达也被镉介导的表观遗传修饰所抑制。ApoE的重新表达明显消除了镉诱导的恶性转化所刺激的细胞侵袭。总之,目前的结果表明,镉介导的细胞侵袭增强与这些肝细胞恶性转化过程中ApoE的下调有关。

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