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MUC13 contributes to rewiring of glucose metabolism in pancreatic cancer

机译:MUC13有助于胰腺癌中葡萄糖代谢的重新连接

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摘要

Pancreatic tumors are rewired for high-glucose metabolism and typically present with exceptionally poor prognosis. Recently, we have shown that MUC13, which is highly expressed in pancreatic tumors, promotes tumor progression via modulation of HER2 receptor tyrosine kinase activity. Herein, we investigate a novel, MUC13-mediated molecular mechanism responsible for higher glucose metabolism in pancreatic tumors. Our results demonstrate that MUC13 expression leads to the activationuclear translocation of NF-κB p65 and phosphorylation of IκB, which in turn upregulates the expression of important proteins (Glut-1, c-Myc, and Bcl-2) that are involved in glucose metabolism. MUC13 functionally interacts and stabilizes Glut-1 to instigate downstream events responsible for higher glucose uptake in pancreatic cancer cells. Altered MUC13 expression by overexpression and knockdown techniques effectively modulated glucose uptake, lactate secretion, and metastatic phenotypes in pancreatic cancer cells. NF-κB inhibitor, Sulfasalazine, abrogates the MUC13 and Glut-1 interaction, and attenuates events associated with MUC13-induced glucose metabolism. Pancreatic ductal adenocarcinoma (PDAC) patient tissue samples also show a positive correlation between the expression of these two proteins. These results delineate how MUC13 rewire aberrant glucose metabolism to enhance aggressiveness of pancreatic cancer and revealed a novel mechanism to develop newer therapeutic strategies for this exceptionally difficult cancer.
机译:胰腺肿瘤重新连接以进行高糖代谢,通常预后极差。最近,我们已经显示在胰腺肿瘤中高度表达的MUC13通过调节HER2受体酪氨酸激酶活性来促进肿瘤进展。本文中,我们研究了一种新型的,MUC13介导的分子机制,该机制负责胰腺肿瘤中更高的葡萄糖代谢。我们的结果表明,MUC13的表达导致NF-κBp65的活化/核易位和IκB的磷酸化,进而上调了参与其中的重要蛋白质(Glut-1,c-Myc和Bcl-2)的表达。葡萄糖代谢。 MUC13在功能上相互作用并稳定Glut-1,从而引发导致胰腺癌细胞中更高的葡萄糖摄取的下游事件。通过过表达和基因敲除技术改变了MUC13的表达,可以有效地调节胰腺癌细胞中的葡萄糖摄取,乳酸分泌和转移表型。 NF-κB抑制剂柳氮磺吡啶可消除MUC13和Glut-1的相互作用,并减弱与MUC13诱导的葡萄糖代谢有关的事件。胰腺导管腺癌(PDAC)患者组织样品也显示这两种蛋白的表达之间呈正相关。这些结果描述了MUC13如何改变异常的葡萄糖代谢以增强胰腺癌的侵袭性,并揭示了一种新颖的机制来开发针对这种异常困难的癌症的新治疗策略。

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