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HNF4alpha 对肝脏外源传感器功能的调节。

Regulation of hepatic xenosensor function by HNF4alpha.

机构信息

Department of Pharmacology, Toxicology, and Therapeutics, University of Kansas Medical Center, Kansas City, KS 66160, United States.

出版信息

Toxicol Sci. 2024 Aug 1;200(2):346-356. doi: 10.1093/toxsci/kfae069.

Abstract

Nuclear receptors such as constitutive androstane receptor (CAR), pregnane X receptor (PXR), and peroxisome proliferator-activated receptor-alpha (PPARα), and transcription factors with nuclear receptor type activity such as aryl hydrocarbon receptor (AhR) function as xenobiotic sensors. Hepatocyte nuclear factor 4alpha (HNF4α) is a highly conserved orphan nuclear receptor essential for liver function. We tested the hypothesis that HNF4α is essential for the function of these 4 major xenosensors. Wild-type (WT) and hepatocyte-specific Hnf4a null (HNF4α-KO) mice were treated with the mouse-specific activators of AhR (TCDD, 30 µg/kg), CAR (TCPOBOP, 2.5 µg/g), PXR, (PCN, 100 µg/g), and PPARα (WY-14643, 1 mg/kg). Blood and liver tissue samples were collected to study receptor activation. TCDD (AhR agonist) treatment did not affect the liver-to-body weight ratio (LW/BW) in either WT or HNF4α-KO mice. Further, TCDD activated AhR in both WT and HNF4α-KO mice, confirmed by increase in expression of AhR target genes. TCPOBOP (CAR agonist) significantly increased the LW/BW ratio and CAR target gene expression in WT mice, but not in HNF4α-KO mice. PCN (a mouse PXR agonist) significantly increased LW/BW ratio in both WT and HNF4α-KO mice however, failed to induce PXR target genes in HNF4α-KO mice. The treatment of WY-14643 (PPARα agonist) increased LW/BW ratio and PPARα target gene expression in WT mice but not in HNF4α-KO mice. Together, these data indicate that the function of CAR, PXR, and PPARα but not of AhR was disrupted in HNF4α-KO mice. These results demonstrate that HNF4α function is critical for the activation of hepatic xenosensors, which are critical for toxicological responses.

摘要

核受体,如组成型雄烷受体 (CAR)、孕烷 X 受体 (PXR) 和过氧化物酶体增殖物激活受体-α (PPARα),以及具有核受体型活性的转录因子,如芳香烃受体 (AhR),作为外源性物质传感器发挥作用。肝细胞核因子 4α (HNF4α) 是一种高度保守的孤儿核受体,对肝脏功能至关重要。我们检验了这样一个假设,即 HNF4α 对于这 4 种主要的外源性传感器的功能是必需的。使用特定于小鼠的 AhR 激动剂 (TCDD,30μg/kg)、CAR (TCPOBOP,2.5μg/g)、PXR (PCN,100μg/g) 和 PPARα (WY-14643,1mg/kg) 处理野生型 (WT) 和肝特异性 Hnf4a 敲除 (HNF4α-KO) 小鼠。收集血液和肝脏组织样本以研究受体激活。TCDD( AhR 激动剂) 处理并未影响 WT 或 HNF4α-KO 小鼠的肝体比 (LW/BW)。此外,TCDD 激活了 WT 和 HNF4α-KO 小鼠中的 AhR,这一点通过 AhR 靶基因表达的增加得到证实。TCPOBOP(CAR 激动剂) 显著增加了 WT 小鼠的 LW/BW 比值和 CAR 靶基因表达,但在 HNF4α-KO 小鼠中没有。PCN( 一种小鼠 PXR 激动剂) 显著增加了 WT 和 HNF4α-KO 小鼠的 LW/BW 比值,但未能诱导 HNF4α-KO 小鼠中的 PXR 靶基因。WY-14643(PPARα 激动剂) 增加了 WT 小鼠的 LW/BW 比值和 PPARα 靶基因表达,但在 HNF4α-KO 小鼠中没有。总之,这些数据表明,CAR、PXR 和 PPARα 的功能(但不是 AhR 的功能)在 HNF4α-KO 小鼠中受到破坏。这些结果表明,HNF4α 功能对于肝脏外源性传感器的激活至关重要,而这些传感器对于毒理学反应至关重要。

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