首页> 美国卫生研究院文献>Oncotarget >Mucin1 shifts Smad3 signaling from the tumor-suppressive pSmad3C/p21WAF1 pathway to the oncogenic pSmad3L/c-Myc pathway by activating JNK in human hepatocellular carcinoma cells
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Mucin1 shifts Smad3 signaling from the tumor-suppressive pSmad3C/p21WAF1 pathway to the oncogenic pSmad3L/c-Myc pathway by activating JNK in human hepatocellular carcinoma cells

机译:Mucin1通过激活人肝癌细胞中的JNK将Smad3信号从肿瘤抑制性pSmad3C / p21WAF1途径转移到致癌性pSmad3L / c-Myc途径

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摘要

Mucin1 (MUC1) is a transmembrane glycoprotein that acts as an oncogene in human hepatic tumorigenesis. Hepatocellular carcinoma (HCC) cells often gain advantage by reducing the tumor-suppressive activity of transforming growth factor beta (TGF-β) together with stimulation of its oncogenic activity as in MUC1 expressing HCC cells; however, molecular mechanisms remain largely unknown. Type I TGF-β receptor (TβRI) and c-Jun NH2-terminal kinase (JNK) differentially phosphorylate Smad3 mediator to create 2 phosphorylated forms: COOH-terminally phosphorylated Smad3 (pSmad3C) and linker-phosphorylated Smad3 (pSmad3L). Here, we report that MUC1 overexpression in HCC cell lines suppresses TβRI-mediated pSmad3C signaling which involves growth inhibition by up-regulating p21WAF1. Instead, MUC1 directly activates JNK to stimulate oncogenic pSmad3L signaling, which fosters cell proliferation by up-regulating c-Myc. Conversely, MUC1 gene silencing in MUC1 expressing HCC cells results in preserved tumor-suppressive function via pSmad3C, while eliminating pSmad3L-mediated oncogenic activity both in vitro and in vivo. In addition, high correlation between MUC1 and pSmad3L/c-Myc but not pSmad3C/p21WAF1 expression was observed in HCC tissues from patients. Collectively, these results indicate that MUC1 shifts Smad3 signaling from a tumor-suppressive pSmad3C/p21WAF1 to an oncogenic pSmad3L/c-Myc pathway by directly activating JNK in HCC cells, suggesting that MUC1 is an important target for HCC therapy.
机译:Mucin1(MUC1)是一种跨膜糖蛋白,在人肝肿瘤发生中起癌基因的作用。肝细胞癌(HCC)细胞通常通过降低转化生长因子β(TGF-β)的肿瘤抑制活性以及刺激其致癌活性而获得优势,就像表达MUC1的HCC细胞一样。然而,分子机制仍然是未知的。 I型TGF-β受体(TβRI)和c-Jun NH2末端激酶(JNK)差异磷酸化Smad3介体以产生2种磷酸化形式:COOH末端磷酸化Smad3(pSmad3C)和接头磷酸化Smad3(pSmad3L)。在这里,我们报道MUC1在HCC细胞系中的过表达抑制了TβRI介导的pSmad3C信号传导,该信号传导通过上调p21 WAF1 来抑制生长。相反,MUC1直接激活JNK以刺激致癌性pSmad3L信号传导,后者通过上调c-Myc促进细胞增殖。相反,在表达MUC1的HCC细胞中MUC1基因沉默导致通过pSmad3C保留肿瘤抑制功能,同时在体外和体内消除pSmad3L介导的致癌活性。此外,在患者的肝癌组织中观察到MUC1与pSmad3L / c-Myc之间的高度相关,而与pSmad3C / p21 WAF1 的表达之间没有高度相关性。总体而言,这些结果表明,MUC1通过直接激活肝癌细胞中的JNK,将Smad3信号从肿瘤抑制性pSmad3C / p21 WAF1 转移到致癌性pSmad3L / c-Myc途径,这表明MUC1是重要的靶标用于HCC治疗。

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