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首页> 外文期刊>The journal of clinical investigation >Hepatocyte nuclear factor 1α suppresses steatosis-associated liver cancer by inhibiting PPARγ transcription
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Hepatocyte nuclear factor 1α suppresses steatosis-associated liver cancer by inhibiting PPARγ transcription

机译:肝细胞核因子1α通过抑制PPARγ转录抑制与脂肪变性相关的肝癌

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Worldwide epidemics of metabolic diseases, including liver steatosis, are associated with an increased frequency of malignancies, showing the highest positive correlation for liver cancer. The heterogeneity of liver cancer represents a clinical challenge. In liver, the transcription factor PPARγ promotes metabolic adaptations of lipogenesis and aerobic glycolysis under the control of Akt2 activity, but the role of PPARγ in liver tumorigenesis is unknown. Here we have combined preclinical mouse models of liver cancer and genetic studies of a human liver biopsy atlas with the aim of identifying putative therapeutic targets in the context of liver steatosis and cancer. We have revealed a protumoral interaction of Akt2 signaling with hepatocyte nuclear factor 1α (HNF1α) and PPARγ, transcription factors that are master regulators of hepatocyte and adipocyte differentiation, respectively. Akt2 phosphorylates and inhibits HNF1α, thus relieving the suppression of hepatic PPARγ expression and promoting tumorigenesis. Finally, we observed that pharmacological inhibition of PPARγ is therapeutically effective in a preclinical murine model of steatosis-associated liver cancer. Taken together, our studies in humans and mice reveal that Akt2 controls hepatic tumorigenesis through crosstalk between HNF1α and PPARγ.
机译:包括肝脂肪变性在内的全球性代谢疾病的流行与恶性肿瘤的发生频率增加相关,显示出与肝癌的最高正相关。肝癌的异质性代表了临床挑战。在肝脏中,转录因子PPARγ在Akt2活性的控制下促进脂肪生成和有氧糖酵解的代谢适应,但是PPARγ在肝肿瘤发生中的作用尚不清楚。在这里,我们结合了肝癌的临床前小鼠模型和人类肝活检图谱的遗传研究,目的是在肝脂肪变性和癌症的背景下确定推定的治疗靶标。我们已经揭示了Akt2信号转导与肝细胞核因子1α(HNF1α)和PPARγ,分别是肝细胞和脂肪细胞分化的主要调控因子的转录因子之间的相互作用。 Akt2磷酸化并抑制HNF1α,从而减轻肝PPARγ表达的抑制并促进肿瘤发生。最后,我们观察到PPARγ的药理抑制作用在与脂肪变性相关的肝癌的临床前鼠模型中具有治疗效果。综上所述,我们在人和小鼠中的研究表明,Akt2通过HNF1α与PPARγ之间的串扰控制肝肿瘤的发生。

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