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YAP1 oncogene is a context-specific driver for pancreatic ductal adenocarcinoma
Bo Tu, Jun Yao, Sammy Ferri-Borgogno, Jun Zhao, Shujuan Chen, Qiuyun Wang, Liang Yan, Xin Zhou, Cihui Zhu, Seungmin Bang, Qing Chang, Christopher A. Bristow, Ya’an Kang, Hongwu Zheng, Huamin Wang, Jason B. Fleming, Michael Kim, Timothy P. Heffernan, Giulio F. Draetta, Duojia Pan, Anirban Maitra, Wantong Yao, Sonal Gupta, Haoqiang Ying
Bo Tu, Jun Yao, Sammy Ferri-Borgogno, Jun Zhao, Shujuan Chen, Qiuyun Wang, Liang Yan, Xin Zhou, Cihui Zhu, Seungmin Bang, Qing Chang, Christopher A. Bristow, Ya’an Kang, Hongwu Zheng, Huamin Wang, Jason B. Fleming, Michael Kim, Timothy P. Heffernan, Giulio F. Draetta, Duojia Pan, Anirban Maitra, Wantong Yao, Sonal Gupta, Haoqiang Ying
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Research Article Genetics Oncology

YAP1 oncogene is a context-specific driver for pancreatic ductal adenocarcinoma

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Abstract

Transcriptomic profiling classifies pancreatic ductal adenocarcinoma (PDAC) into several molecular subtypes with distinctive histological and clinical characteristics. However, little is known about the molecular mechanisms that define each subtype and their correlation with clinical outcome. Mutant KRAS is the most prominent driver in PDAC, present in over 90% of tumors, but the dependence of tumors on oncogenic KRAS signaling varies between subtypes. In particular, the squamous subtype is relatively independent of oncogenic KRAS signaling and typically displays much more aggressive clinical behavior versus the progenitor subtype. Here, we identified that yes-associated protein 1 (YAP1) activation is enriched in the squamous subtype and associated with poor prognosis. Activation of YAP1 in progenitor subtype cancer cells profoundly enhanced malignant phenotypes and transformed progenitor subtype cells into squamous subtype. Conversely, depletion of YAP1 specifically suppressed tumorigenicity of squamous subtype PDAC cells. Mechanistically, we uncovered a significant positive correlation between WNT5A expression and YAP1 activity in human PDAC and demonstrated that WNT5A overexpression led to YAP1 activation and recapitulated a YAP1-dependent but Kras-independent phenotype of tumor progression and maintenance. Thus, our study identifies YAP1 oncogene as a major driver of squamous subtype PDAC and uncovers the role of WNT5A in driving PDAC malignancy through activation of the YAP pathway.

Authors

Bo Tu, Jun Yao, Sammy Ferri-Borgogno, Jun Zhao, Shujuan Chen, Qiuyun Wang, Liang Yan, Xin Zhou, Cihui Zhu, Seungmin Bang, Qing Chang, Christopher A. Bristow, Ya’an Kang, Hongwu Zheng, Huamin Wang, Jason B. Fleming, Michael Kim, Timothy P. Heffernan, Giulio F. Draetta, Duojia Pan, Anirban Maitra, Wantong Yao, Sonal Gupta, Haoqiang Ying

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Figure 7

The WNT5A/YAP1 axis is active in primary human PDAC and required for tumor maintenance.

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The WNT5A/YAP1 axis is active in primary human PDAC and required for tum...
(A) WNT5A expression in squamous or progenitor subtype PDXs. (B) Western blot analysis for WNT5A, YAP1, phospho-YAP1, and CYR61 in PDX cell lines of squamous or progenitor subtype. WNT5A blot was run in parallel with the rest of the blots contemporaneously. (C) Western blot analysis for WNT5A, YAP1, and phospho-YAP1 in squamous subtype PDX cell lines infected with WNT5A shRNAs or nontargeting shRNA. The pYAP1 blot for PATC153 was run in parallel with the rest of the blots for PATC153 contemporaneously. (D) Representative images of the colony formation assay for squamous subtype PDX cell lines infected with WNT5A shRNAs or nontargeting shRNA. (E) Quantification from triplicates is shown. (F) PATC108 and PATC148 cells infected with WNT5A shRNAs or nontargeting shRNA were subcutaneously injected into nude mice. Tumor volumes were measured on the indicated dates after injection, and relative tumor growth normalized to day 14 was presented. Results are presented as the means ± SD (n = 5). (G) Western blot analysis for KRAS, phospho-MEK1/2, and MEK1/2 in PDX cell lines infected with KRAS shRNAs or nontargeting shRNA. (H) Cell growth assay for PDX cell lines infected with KRAS shRNAs or nontargeting shRNA. Quantification from triplicates is presented as relative cell growth upon normalization to the shCtr group. P value was corrected with Dunnett’s method. The box plots depict the minimum and maximum values (whiskers), the upper and lower quartiles, and the median. The length of the box represents the interquartile range. Error bars from all panels indicate ± SD. **P < 0.01.

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