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首页> 外文期刊>Oncogene >IFN-|[gamma]|-induced expression of MUC4 in pancreatic cancer cells is mediated by STAT-1 upregulation: a novel mechanism for IFN-|[gamma]| response
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IFN-|[gamma]|-induced expression of MUC4 in pancreatic cancer cells is mediated by STAT-1 upregulation: a novel mechanism for IFN-|[gamma]| response

机译:STAT-1上调介导IFN- |γ|诱导的胰腺癌细胞中MUC4的表达:IFN- |γ|诱导的新机制。响应

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MUC4 is a transmembrane mucin, which is aberrantly expressed in pancreatic adenocarcinoma with no detectable expression in the normal pancreas. Here, we present a novel mechanism of IFN--induced expression of MUC4 in pancreatic cancer cells. Our studies highlight the upregulation of STAT-1 as a basis for MUC4 induction and demonstrate that its activation and upregulation by IFN- are two distinct, albeit temporally integrated, signalling events that drive the selective induction of IRF-1 and MUC4, respectively, within a single cell system. The profile of interferon regulatory factor (IRF)-1 gene induction by IFN- is consistent with its rapid transactivation by phospho-Y701-STAT-1. In contrast, the induction of the MUC4 mucin gene expression is relatively delayed, and occurs only in response to an increase in STAT-1 expression. A progressive binding of STAT-1 to various -interferon-activated sequences (GAS) in the MUC4 promoter is observed in chromatin immunoprecipitation assay, indicating its direct association. Stimulation of STAT-1 expression by double-stranded polynucleotides or ectopic expression is shown to induce MUC4 expression, without Y701 phosphorylation of STAT-1. This effect is abrogated by short interfering RNA (siRNA)-mediated inhibition of STAT-1 expression, supporting further the relevance of STAT-1 in MUC4 regulation. In conclusion, our findings identify a novel mechanism for MUC4 regulation in pancreatic cancer cells and unfold new perspectives on the foundation of IFN--dependent gene regulation.
机译:MUC4是跨膜粘蛋白,在胰腺腺癌中异常表达,在正常胰腺中未检测到表达。在这里,我们提出了一种新的机制,可在胰腺癌细胞中诱导IFN诱导MUC4的表达。我们的研究突出了STAT-1的上调作为MUC4诱导的基础,并证明了IFN-γ的激活和上调是两个不同的信号事件,尽管在时间上是整合的,分别驱动选择性诱导IRF-1和MUC4。单细胞系统。 IFN-诱导的干扰素调节因子(IRF)-1基因的概况与其通过磷酸-Y701-STAT-1的快速反式激活是一致的。相反,MUC4粘蛋白基因表达的诱导相对延迟,并且仅响应STAT-1表达的增加而发生。在染色质免疫沉淀试验中观察到STAT-1与MUC4启动子中各种干扰素激活序列(GAS)的逐步结合,表明其直接缔合。显示通过双链多核苷酸或异位表达刺激STAT-1表达可诱导MUC4表达,而STAT-1没有Y701磷酸化。短干扰RNA(siRNA)介导的STAT-1表达抑制抑制了这​​种作用,进一步支持了STAT-1在MUC4调控中的相关性。总之,我们的发现确定了胰腺癌细胞中MUC4调控的新机制,并在依赖IFN的基因调控的基础上展现了新的观点。

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