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β-Catenin Sustains and Is Required for YES-associated Protein Oncogenic Activity in Cholangiocarcinoma

Wnt信号通路 连环素 转录因子 生物 细胞生物学 条件基因敲除 蛋白激酶B 免疫染色 信号转导 基因 癌症研究 遗传学 表型 免疫组织化学 免疫学
作者
Yi Zhang,Hui Xu,Guofei Cui,Benjia Liang,Xiangzheng Chen,Sungjin Ko,Silvia Affò,Xinhua Song,Yi Liao,Jianguo Feng,Pan Wang,Haichuan Wang,Meng Xu,Jingxiao Wang,Giovanni Mario Pes,Silvia Ribback,Yong Zeng,Aatur D. Singhi,Robert F. Schwabe,Satdarshan P. Monga,Matthias Evert,Liling Tang,Diego F. Calvisi,Xin Chen
出处
期刊:Gastroenterology [Elsevier]
卷期号:163 (2): 481-494 被引量:12
标识
DOI:10.1053/j.gastro.2022.04.028
摘要

Background & Aims YES-associated protein (YAP) aberrant activation is implicated in intrahepatic cholangiocarcinoma (iCCA). Transcriptional enhanced associate domain (TEAD)-mediated transcriptional regulation is the primary signaling event downstream of YAP. The role of Wnt/β-Catenin signaling in cholangiocarcinogenesis remains undetermined. Here, we investigated the possible molecular interplay between YAP and β-Catenin cascades in iCCA. Methods Activated AKT (Myr-Akt) was coexpressed with YAP (YapS127A) or Tead2VP16 via hydrodynamic tail vein injection into mouse livers. Tumor growth was monitored, and liver tissues were collected and analyzed using histopathologic and molecular analysis. YAP, β-Catenin, and TEAD interaction in iCCAs was investigated through coimmunoprecipitation. Conditional Ctnnb1 knockout mice were used to determine β-Catenin function in murine iCCA models. RNA sequencing was performed to analyze the genes regulated by YAP and/or β-Catenin. Immunostaining of total and nonphosphorylated/activated β-Catenin staining was performed in mouse and human iCCAs. Results We discovered that TEAD factors are required for YAP-dependent iCCA development. However, transcriptional activation of TEADs did not fully recapitulate YAP’s activities in promoting cholangiocarcinogenesis. Notably, β-Catenin physically interacted with YAP in human and mouse iCCA. Ctnnb1 ablation strongly suppressed human iCCA cell growth and Yap-dependent cholangiocarcinogenesis. Furthermore, RNA-sequencing analysis revealed that YAP/ transcriptional coactivator with PDZ-binding motif (TAZ) regulate a set of genes significantly overlapping with those controlled by β-Catenin. Importantly, activated/nonphosphorylated β-Catenin was detected in more than 80% of human iCCAs. Conclusion YAP induces cholangiocarcinogenesis via TEAD-dependent transcriptional activation and interaction with β-Catenin. β-Catenin binds to YAP in iCCA and is required for YAP full transcriptional activity, revealing the functional crosstalk between YAP and β-Catenin pathways in cholangiocarcinogenesis.
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