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Hippo Cascade Controls Lineage Commitment of Liver Tumors in Mice and Humans

机译:河马级联控制小鼠和人类肝肿瘤的沿袭承诺。

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摘要

Primary liver cancer consists mainly of hepatocellular carcinoma (HCC) and intrahepatic cholangiocarcinoma (ICC). A subset of human HCCs expresses a ICC-like gene signature and is classified as ICC-like HCC. The Hippo pathway is a critical regulator of normal and malignant liver development. However, the precise function(s) of the Hippo cascade along liver carcinogenesis remain to be fully delineated. The role of the Hippo pathway in a murine mixed HCC/ICC model induced by activated forms of AKT and Ras oncogenes (AKT/Ras) was investigated. The authors demonstrated the inactivation of Hippo in AKT/Ras liver tumors leading to nuclear localization of Yap and TAZ. Coexpression of AKT/Ras with Lats2, which activates Hippo, or the dominant negative form of TEAD2 (dnTEAD2), which blocks Yap/TAZ activity, resulted in delayed hepatocarcinogenesis and elimination of ICC-like lesions in the liver. Mechanistically, Notch2 expression was found to be down-regulated by the Hippo pathway in liver tumors. Overexpression of Lats2 or dnTEAD2 in human HCC cell lines inhibited their growth and led to the decreased expression of ICC-like markers, as well as Notch2 expression. Altogether, this study supports the key role of the Hippo cascade in regulating the differentiation status of liver tumors.
机译:原发性肝癌主要包括肝细胞癌(HCC)和肝内胆管癌(ICC)。人类HCC的子集表达ICC样基因签名,并被分类为ICC样HCC。河马途径是正常和恶性肝脏发育的关键调节器。然而,河马级联沿着肝癌发生的精确功能仍有待充分描述。研究了河马途径在由AKT和Ras致癌基因(AKT / Ras)的活化形式诱导的鼠类HCC / ICC混合模型中的作用。作者证明了AKT / Ras肝肿瘤中Hippo的失活导致Yap和TAZ的核定位。 AKT / Ras与激活Hippo的Lats2的共表达或阻断Yap / TAZ活性的TEAD2的主要阴性形式(dnTEAD2)的共表达,导致肝癌的延迟发生和肝脏ICC样病变的消除。从机制上讲,Notch2表达被肝肿瘤中的Hippo通路下调。 Lats2或dnTEAD2在人HCC细胞系中的过表达抑制了它们的生长,并导致ICC样标记物以及Notch2的表达下降。总之,这项研究支持了河马级联在调节肝肿瘤分化状态中的关键作用。

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