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Role of integrin-linked kinase in regulating the protein stability of the MUC1-C oncoprotein in pancreatic cancer cells

机译:整合素连接激酶在胰腺癌细胞中调节MUC1-C癌蛋白蛋白质稳定性的作用

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MUC1-C overexpression has been associated with the progression of pancreatic tumors by promoting the aggressive and metastatic phenotypes. As MUC1 is a STAT3 target gene, STAT3 plays a major role in regulating MUC1-C expression. In this study, we report an alternative mechanism by which integrin-linked kinase (ILK) post-transcriptionally modulates the expression of MUC1-C by maintaining its protein stability in pancreatic cancer cells. We found that ILK acts in concert with STAT3 to facilitate IL-6-mediated upregulation of MUC1-C; ILK depletion was equally effective as STAT3 depletion in abolishing IL-6-induced MUC1-C overexpression without disturbing the phosphorylation or cellular distribution of STAT3. Conversely, ectopic expression of constitutively active ILK increased MUC1-C expression, though this increase was not noted with kinase-dead ILK. This finding suggests the requirement of the kinase activity of ILK in regulating MUC1-C stability, which was confirmed by using the ILK kinase inhibitor T315. Furthermore, our data suggest the involvement of protein kinase C (PKC)δ in mediating the suppressive effect of ILK inhibition on MUC1-C repression. For example, co-immunoprecipitation analysis indicated that ILK depletion-mediated MUC1-C phosphorylation was accompanied by increased phosphorylation of PKCδ at the activation loop Thr-507 and increased binding of PKCδ to MUC1-C. Conversely, ILK overexpression resulted in decreased PKCδ phosphorylation. From a mechanistic perspective, the present finding, together with our recent report that ILK controls the expression of oncogenic KRAS through a regulatory loop, underscores the pivotal role of ILK in promoting pancreatic cancer progression.
机译:通过促进侵袭性和转移性表型,MUC1-C过表达与胰腺肿瘤的进展有关。由于MUC1是STAT3靶基因,因此STAT3在调节MUC1-C表达中起主要作用。在这项研究中,我们报告了一种替代机制,通过该机制,整合素连接激酶(ILK)在转录后通过维持其在胰腺癌细胞中的蛋白质稳定性来调节MUC1-C的表达。我们发现ILK与STAT3协同作用,以促进IL-6介导的MUC1-C的上调。 ILK耗竭与STAT3耗竭在消除IL-6诱导的MUC1-C过表达而不破坏STAT3的磷酸化或细胞分布方面同样有效。相反,组成性活性ILK的异位表达增加了MUC1-C的表达,尽管激酶死亡的ILK并未注意到这种增加。该发现表明ILK的激酶活性需要调节MUC1-C的稳定性,这通过使用ILK激酶抑制剂T315得以证实。此外,我们的数据表明蛋白激酶C(PKC)δ参与介导ILK抑制对MUC1-C抑制的抑制作用。例如,共免疫沉淀分析表明,ILK耗竭介导的MUC1-C磷酸化伴随着激活环Thr-507处PKCδ的磷酸化增加以及PKCδ与MUC1-C的结合增加。相反,ILK过表达导致PKCδ磷酸化降低。从机理的角度来看,本发现与我们最近的报道(ILK通过调节环控制致癌性KRAS的表达)一起强调了ILK在促进胰腺癌进展中的关键作用。

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