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PIK3CA和Yap的共同激活促进小鼠和人类肝脏中肝细胞和胆管细胞肿瘤的发展。

Co-activation of PIK3CA and Yap promotes development of hepatocellular and cholangiocellular tumors in mouse and human liver.

作者信息

Li Xiaolei, Tao Junyan, Cigliano Antonio, Sini Marcella, Calderaro Julien, Azoulay Daniel, Wang Chunmei, Liu Yan, Jiang Lijie, Evert Katja, Demartis Maria I, Ribback Silvia, Utpatel Kirsten, Dombrowski Frank, Evert Matthias, Calvisi Diego F, Chen Xin

机构信息

Department of Hepatobiliary Surgery, Xijing Hospital, The Fourth Military Medical University, Xi'an, Shaanxi, P.R. China.

Department of Bioengineering and Therapeutic Sciences and Liver Center, University of California, San Francisco, CA, U.S.A.

出版信息

Oncotarget. 2015 Apr 30;6(12):10102-15. doi: 10.18632/oncotarget.3546.

Abstract

Activation of the PI3K and Yes-associated protein (Yap) signaling pathways has been independently reported in human hepatocellular carcinoma (HCC). However, the oncogenic interactions between these two cascades in hepatocarcinogenesis remain undetermined. To assess the consequences of the crosstalk between the PI3K and Yap pathways along liver carcinogenesis, we generated a mouse model characterized by combined overexpression of activated mutant forms of PIK3CA (PIK3CAH1047R) and Yap (YapS127A) in the mouse liver using hydrodynamic transfection (PIK3CA/Yap). In addition, suppression of PI3K and Yap pathways was conducted in human HCC and cholangiocarcinoma (CCA) cell lines. We found that concomitant activation of PI3K and Yap pathways triggered rapid liver tumor development in mice. Histologically, tumors were pure HCC, CCA, or mixed HCC/CCA. At the molecular level, PIK3CA/Yap tumors were characterized by activation of the mTORC1/2, ERK/MAPK, and Notch pathways. Simultaneous activation of PI3K and Yap pathways frequently occurred in human liver tumor specimens and their combined suppression was highly detrimental for the growth of HCC and CCA cell lines. In conclusion, our study demonstrates the oncogenic cooperation between PI3K and Yap pathways along liver carcinogenesis. The PIK3CA/Yap mouse represents an important preclinical liver tumor model for the development of novel therapeutics against this malignancy.

摘要

PI3K和Yes相关蛋白(Yap)信号通路的激活已在人类肝细胞癌(HCC)中分别有报道。然而,这两个级联反应在肝癌发生过程中的致癌相互作用仍未确定。为了评估PI3K和Yap通路在肝癌发生过程中的串扰后果,我们使用流体动力学转染技术在小鼠肝脏中生成了一个以联合过表达活化突变形式的PIK3CA(PIK3CAH1047R)和Yap(YapS127A)为特征的小鼠模型(PIK3CA/Yap)。此外,在人类肝癌和胆管癌(CCA)细胞系中对PI3K和Yap通路进行了抑制。我们发现PI3K和Yap通路的同时激活在小鼠中引发了快速的肝肿瘤发展。组织学上,肿瘤为单纯性肝癌、胆管癌或混合性肝癌/胆管癌。在分子水平上,PIK3CA/Yap肿瘤的特征是mTORC1/2、ERK/MAPK和Notch通路的激活。PI3K和Yap通路的同时激活在人类肝肿瘤标本中经常发生,并且它们的联合抑制对肝癌和胆管癌细胞系的生长非常不利。总之,我们的研究证明了PI3K和Yap通路在肝癌发生过程中的致癌协同作用。PIK3CA/Yap小鼠代表了一种重要的临床前肝肿瘤模型,用于开发针对这种恶性肿瘤的新型治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2fa/4496343/3c56d954bad4/oncotarget-06-10102-g001.jpg

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