Javascript must be enabled to continue!
Loss of Disabled-2 Expression in Pancreatic Cancer Progression
View through CrossRef
AbstractPancreatic ductal adenocarcinoma (PDAC) is a highly aggressive cancer type characterized by rapid metastasis and resistance to chemotherapy, properties that are shared by cancer stem cells (CSCs). In pancreatic cancer, tumor cells which possess the properties of CSCs also phenotypically resemble cells that have undergone epithelial-to-mesenchymal transition or EMT. Disabled-2 (Dab2) is a multifunctional scaffold protein frequently downregulated in cancer that has been linked to the process of EMT. However, the role of Dab2 in pancreatic cancer development and progression remains unclear. Downregulation of Dab2 expression in pancreatic cancer cell lines was found to trigger induction of genes characteristic of EMT and the CSC phenotype, while overexpression of Dab2 in the Panc1 cell line blocked the process of TGFβ-stimulated EMT. In addition, selective inhibition of the TGFβRI/RII receptors was found to reverse genes altered by Dab2 downregulation. Dab2 mRNA expression was found to be decreased in PDAC tumor samples, as compared to levels observed in normal pancreatic tissue. Methylation of the Dab2 gene promoter was demonstrated in Stage I PDAC tumors and in the MiaPaCa2 cell line, suggesting that promoter methylation may silence Dab2 expression early in pancreatic cancer progression. These results suggest that Dab2 may function as a tumor suppressor in pancreatic cancer by modulation of the TGFβ-stimulated EMT and CSC phenotype.
Title: Loss of Disabled-2 Expression in Pancreatic Cancer Progression
Description:
AbstractPancreatic ductal adenocarcinoma (PDAC) is a highly aggressive cancer type characterized by rapid metastasis and resistance to chemotherapy, properties that are shared by cancer stem cells (CSCs).
In pancreatic cancer, tumor cells which possess the properties of CSCs also phenotypically resemble cells that have undergone epithelial-to-mesenchymal transition or EMT.
Disabled-2 (Dab2) is a multifunctional scaffold protein frequently downregulated in cancer that has been linked to the process of EMT.
However, the role of Dab2 in pancreatic cancer development and progression remains unclear.
Downregulation of Dab2 expression in pancreatic cancer cell lines was found to trigger induction of genes characteristic of EMT and the CSC phenotype, while overexpression of Dab2 in the Panc1 cell line blocked the process of TGFβ-stimulated EMT.
In addition, selective inhibition of the TGFβRI/RII receptors was found to reverse genes altered by Dab2 downregulation.
Dab2 mRNA expression was found to be decreased in PDAC tumor samples, as compared to levels observed in normal pancreatic tissue.
Methylation of the Dab2 gene promoter was demonstrated in Stage I PDAC tumors and in the MiaPaCa2 cell line, suggesting that promoter methylation may silence Dab2 expression early in pancreatic cancer progression.
These results suggest that Dab2 may function as a tumor suppressor in pancreatic cancer by modulation of the TGFβ-stimulated EMT and CSC phenotype.
Related Results
Abstract IA-08: Clinical advances in pancreas adenocarcinoma
Abstract IA-08: Clinical advances in pancreas adenocarcinoma
Abstract
Pancreatic adenocarcinoma (PDAC) remains one of the most lethal cancers today and is expected to be the second cause of cancer death in the coming decade. M...
High KLK7 Expression Predicts Unfavorable Outcomes in Patients with Resectable Pancreatic Ductal Adenocarcinoma
High KLK7 Expression Predicts Unfavorable Outcomes in Patients with Resectable Pancreatic Ductal Adenocarcinoma
Abstract
Background Studies have shown that kallikrein-related peptidase 7 (KLK7) is abnormally expressed in a various of tumours and plays a crucial role in tumour progres...
Abstract LB-80: Building Bridges for Pancreatic Cancer Research
Abstract LB-80: Building Bridges for Pancreatic Cancer Research
Abstract
Almost 40 years after President Nixon signed into law the National Cancer Act, the survival rate for pancreatic cancer has not substantially improved. Today...
Potential regulatory mechanisms of hsa_circ_0131457/miR-636/SFRP2 inhibition of tumor progression in pancreatic ductus adenocarcinoma
Potential regulatory mechanisms of hsa_circ_0131457/miR-636/SFRP2 inhibition of tumor progression in pancreatic ductus adenocarcinoma
Abstract
Background: Circular RNAs (circRNAs), a novel class of non-coding RNAs, have been found to act as miRNA sponges that competitively inhibit the binding of miRNA to ...
Abstract 1603: Intra-pancreatic fat promotes the progression of PDAC by activating thermogenesis
Abstract 1603: Intra-pancreatic fat promotes the progression of PDAC by activating thermogenesis
Abstract
Background: The presence of minimal intra-pancreatic fat deposition (IPFD) in the healthy human pancreas has been demonstrated in numerous studies. But exce...
Abstract 438: Cholesterol biosynthesis is a critical metabolic dependency in pancreatic cancer
Abstract 438: Cholesterol biosynthesis is a critical metabolic dependency in pancreatic cancer
Abstract
Pancreatic cancer is rapidly rising to become the 2nd leading cause of cancer deaths by 2020 in the USA. The rise in pancreatic cancer incidence is parallel...
Abstract 1695: Imaging of the interaction of pancreatic cancer and stellate cells during liver metastasis
Abstract 1695: Imaging of the interaction of pancreatic cancer and stellate cells during liver metastasis
Abstract
Pancreatic stellate cells are involved in fibrosis of pancreatic cancer. An understanding of pancreatic cancer-cell interactions with stellate cells is crit...
Abstract 1756: The roles of Regnase-1 in pancreatic cancer development and progression
Abstract 1756: The roles of Regnase-1 in pancreatic cancer development and progression
Abstract
Background: Regnase-1 is a RNA-degrading enzyme that plays an important role in the regulation of inflammation by degrading mRNA of inflammation-related gen...

