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Malignant Transformation of Human Bronchial Epithelial Cells Induced by Arsenic through STAT3/miR-301a/SMAD4 Loop

机译:STAT3 / miR-301a / SMAD4环诱导砷诱导人支气管上皮细胞恶变

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摘要

Arsenic is a well-known of human carcinogen and miR-301a is an oncogenic microRNA, which links to oncogenesis, however, little is understood about its contribution to arsenic-induced cellular transformation and tumorigenesis. Here, we investigated the role of miR-301a during arsenic-induced cellular transformation and tumor formation. miR-301a was found to be upregulated during arsenic-induced BEAS-2B transformation and the overexpression of miR-301a was dependent on IL-6/STAT3 signaling. Inhibition of miR-301a leads to reduction of cell proliferation, colony formation and cell migration. By using dual luciferase assay, SMAD4 was confirmed to be a direct target of miR-301a in BEAS-2B cells and upregulation of SMAD4 is involved the restraining cell growth and migration. In addition, reducing of miR-301a expression enhances doxorubicin-induced cellular apoptosis of transformed BEAS-2B through up-regulating SMAD4. Furthermore, we demonstrated that downregulation of miR-301a in BEAS-2B attenuates tumor growth in the xenograft model by targeting SMAD4. Of note, the level of miR-301a expression correlated inversely with SMAD4 expression in clinical specimens of human lung cancer. Our findings ascertain that miR-301a is an oncogenic miRNA, which targets SMAD4 to establish an essential mechanism for arsenic-induced carcinogenesis, IL-6/STAT3/miR-301a/SMAD4 signaling pathways.
机译:砷是人类致癌物的众所周知的基因,而miR-301a是致癌的microRNA,与致癌作用相关,但是,人们对其对砷诱导的细胞转化和肿瘤发生的作用了解甚少。在这里,我们调查了miR-301a在砷诱导的细胞转化和肿瘤形成过程中的作用。发现miR-301a在砷诱导的BEAS-2B转化过程中被上调,miR-301a的过表达取决于IL-6 / STAT3信号传导。 miR-301a的抑制导致细胞增殖,集落形成和细胞迁移减少。通过使用双重荧光素酶测定法,SMAD4被证实是BEAS-2B细胞中miR-301a的直接靶标,SMAD4的上调与抑制细胞的生长和迁移有关。此外,减少miR-301a表达可通过上调SMAD4增强阿霉素诱导的转化BEAS-2B细胞凋亡。此外,我们证明了BEAS-2B中miR-301a的下调通过靶向SMAD4减弱了异种移植模型中的肿瘤生长。值得注意的是,在人类肺癌的临床样本中,miR-301a的表达水平与SMAD4的表达呈负相关。我们的发现确定了miR-301a是一种致癌性miRNA,其靶向SMAD4以建立砷诱导的致癌作用的基本机制,即IL-6 / STAT3 / miR-301a / SMAD4信号传导途径。

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