TY - JOUR
T1 - Bile acids-mediated overexpression of MUC4 via FAK-dependent c-Jun activation in pancreatic cancer
AU - Joshi, Suhasini
AU - Cruz, Eric
AU - Rachagani, Satyanarayana
AU - Guha, Sushovan
AU - Brand, Randall E.
AU - Ponnusamy, Moorthy P.
AU - Kumar, Sushil
AU - Batra, Surinder K.
N1 - Funding Information:
The work was supported, in part, by grants from the National Institutes of Health ( UO1 CA111294 , P50 CA127297 , U54 CA163120 and RO1 CA183459 ). The authors are indebted to Kavita Mallya, James Talaska, Janice Taylor, and Dr. Phillip Hexley for technical support and Drs. Angie Rizzino and Shilpa Buch for letting us use their facilities. Lastly, we would like to thank UNMC Graduate Studies for the graduate fellowship support to Suhasini Joshi and Eric Cruz.
Publisher Copyright:
© 2016
PY - 2016/8/1
Y1 - 2016/8/1
N2 - The majority of pancreatic cancer (PC) patients are clinically presented with obstructive jaundice with elevated levels of circulatory bilirubin and alkaline phosphatases. In the current study, we examined the implications of bile acids (BA), an important component of bile, on the pathophysiology of PC and investigated their mechanistic association in tumor-promoting functions. Integration of results from PC patient samples and autochthonous mouse models showed an elevated levels of BA (p < 0.05) in serum samples compared to healthy controls. Similarly, an elevated BA levels was observed in pancreatic juice derived from PC patients (p < 0.05) than non-pancreatic non-healthy (NPNH) controls, further establishing the clinical association of BA with the pathogenesis of PC. The tumor-promoting functions of BA were established by observed transcriptional upregulation of oncogenic MUC4 expression. Luciferase reporter assay revealed distal MUC4 promoter as the primary responsive site to BA. In silico analysis recognized two c-Jun binding sites at MUC4 distal promoter, which was biochemically established using ChIP assay. Interestingly, BA treatment led to an increased transcription and activation of c-Jun in a FAK-dependent manner. Additionally, BA receptor, namely FXR, which is also upregulated at transcriptional level in PC patient samples, was demonstrated as an upstream molecule in BA-mediated FAK activation, plausibly by regulating Src activation. Altogether, these results demonstrate that elevated levels of BA increase the tumorigenic potential of PC cells by inducing FXR/FAK/c-Jun axis to upregulate MUC4 expression, which is overexpressed in pancreatic tumors and is known to be associated with progression and metastasis of PC.
AB - The majority of pancreatic cancer (PC) patients are clinically presented with obstructive jaundice with elevated levels of circulatory bilirubin and alkaline phosphatases. In the current study, we examined the implications of bile acids (BA), an important component of bile, on the pathophysiology of PC and investigated their mechanistic association in tumor-promoting functions. Integration of results from PC patient samples and autochthonous mouse models showed an elevated levels of BA (p < 0.05) in serum samples compared to healthy controls. Similarly, an elevated BA levels was observed in pancreatic juice derived from PC patients (p < 0.05) than non-pancreatic non-healthy (NPNH) controls, further establishing the clinical association of BA with the pathogenesis of PC. The tumor-promoting functions of BA were established by observed transcriptional upregulation of oncogenic MUC4 expression. Luciferase reporter assay revealed distal MUC4 promoter as the primary responsive site to BA. In silico analysis recognized two c-Jun binding sites at MUC4 distal promoter, which was biochemically established using ChIP assay. Interestingly, BA treatment led to an increased transcription and activation of c-Jun in a FAK-dependent manner. Additionally, BA receptor, namely FXR, which is also upregulated at transcriptional level in PC patient samples, was demonstrated as an upstream molecule in BA-mediated FAK activation, plausibly by regulating Src activation. Altogether, these results demonstrate that elevated levels of BA increase the tumorigenic potential of PC cells by inducing FXR/FAK/c-Jun axis to upregulate MUC4 expression, which is overexpressed in pancreatic tumors and is known to be associated with progression and metastasis of PC.
KW - Bile acids
KW - FAK
KW - FXR
KW - MUC4
KW - Pancreatic cancer
KW - c-Jun
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U2 - 10.1016/j.molonc.2016.04.007
DO - 10.1016/j.molonc.2016.04.007
M3 - Article
C2 - 27185392
AN - SCOPUS:84966700365
SN - 1574-7891
VL - 10
SP - 1063
EP - 1077
JO - Molecular Oncology
JF - Molecular Oncology
IS - 7
ER -