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Constitutive androstane receptor induced-hepatomegaly and liver regeneration is partially

机译:组成型和rostane受体诱导 - 肝肿大和肝再生部分是部分

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摘要

The constitutive androstane receptor (CAR, NR3I1) belongs to nuclear receptor superfamily. It was reported that CAR agonist TCPOBOP induces hepatomegaly but the underlying mechanism remains largely unknown. Yes-associated protein (YAP) is a potent regulator of organ size. The aim of this study is to explore the role of YAP in CAR activation-induced hepatomegaly and liver regeneration. TCPOBOP-induced CAR activation on hepatomegaly and liver regeneration was evaluated in wild-type (WT) mice, liver-specific YAP-deficient mice, and partial hepatectomy (PHx) mice. The results demonstrate that TCPOBOP can increase the liver-to-body weight ratio in wild-type mice and PHx mice. Hepatocytes enlargement around central vein (CV) area was observed, meanwhile hepatocytes proliferation was promoted as evidenced by the increased number of KI67+ cells around portal vein (PV) area. The protein levels of YAP and its downstream targets were upregulated in TCPOBOP-treated mice and YAP translocation can be induced by CAR activation. Co-immunoprecipitation results suggested a potential protein–protein interaction of CAR and YAP. However, CAR activation-induced hepatomegaly can still be observed in liver-specific YAP-deficient (Yap–/–) mice. In summary, CAR activation promotes hepatomegaly and liver regeneration partially by inducing YAP translocation and interaction with YAP signaling pathway, which provides new insights to further understand the physiological functions of CAR.
机译:组成型和解烷受体(CAR,NR3I1)属于核受体超家族。据报道,汽车激动剂TCPOBOP诱导肝肿大,但潜在的机制仍然很大程度上未知。 YES相关的蛋白质(YAP)是器官尺寸的有效调节剂。本研究的目的是探讨YAP在汽车激活诱导的肝肿瘤和肝再生中的作用。在野生型(WT)小鼠,肝脏特异性的缺乏缺乏小鼠和部分肝切除术(PHX)小鼠中评价肝肿大和肝再生的TCPobop诱导的肝脏活化。结果表明,TCPOBOP可以增加野生型小鼠和PHX小鼠中的肝转力比。观察到中央静脉(CV)区域周围扩大的肝细胞,同时肝细胞增殖,如门静脉(PV)区域周围的ki67 +细胞数量增加所证明。在TCPobobop处理的小鼠中上调蛋白质水平及其下游靶标,并且可以通过轿厢活化诱导YAP易位。共免疫沉淀结果表明汽车和YAP的潜在蛋白质 - 蛋白质相互作用。然而,在肝脏特异性YAP缺陷(YAP - / - )小鼠中仍然可以观察到肝激活诱导的肝肿。总之,通过诱导yap易位和与yap信号通路的相互作用部分地促进肝肿大和肝再生,这提供了进一步了解汽车生理功能的新见解。

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