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Poly(ADP-ribosyl)ated PXR is a critical regulator of acetaminophen-induced hepatotoxicity

机译:聚(ADP-核糖基)化的PXR是对乙酰氨基酚诱导的肝毒性的关键调节剂

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Acetaminophen (APAP) overdose is the most frequent cause of acute liver failure and remains a critical problem in medicine. PARP1-dependent poly(ADPribosyl)ation is a key mediator of cellular stress responses and functions in multiple physiological and pathological processes. However, whether it is involved in the process of APAP metabolism remains elusive. In this study, we find that PARP1 is activated in mouse livers after APAP overdose. Pharmacological or genetic manipulations of PARP1 are sufficient to suppress the APAP-induced hepatic toxicity and injury, as well as reduced APAP metabolism. Mechanistically, we identify pregnane X receptor (PXR) as a substrate of PARP1-mediated poly(ADP-ribosyl)ation. The poly(ADP-ribosyl)ation of PXR in ligand-binding domain activates PXR competitively and solidly, facilitates its recruitment to target gene CYP3A11 promoter, and promotes CYP3A11 gene transcription, thus resulting in increases of APAP pro-toxic metabolism. Additionally, PXR silence antagonizes the effects of PARP1 on APAP-induced hepatotoxicity. These results identifies poly(ADP-ribosyl)ation of PXR by PARP1 as a key step in APAP-induced liver injury. We propose that inhibition of PARP1-dependent poly(ADP-ribosyl)ation might represent a novel approach for the treatment of drug-induced hepatotoxicity.
机译:对乙酰氨基酚(APAP)过量是急性肝衰竭的最常见原因,并且仍然是医学上的关键问题。 PARP1依赖的聚(ADPribosyl)是细胞应激反应和多种生理和病理过程中的功能的关键调解人。但是,它是否参与APAP代谢过程仍不清楚。在这项研究中,我们发现过量APAP后,小鼠肝脏中PARP1被激活。 PARP1的药理或遗传操作足以抑制APAP诱导的肝毒性和损伤,以及减少APAP代谢。从机理上讲,我们确定孕烷X受体(PXR)为PARP1介导的聚(ADP-核糖基)化的底物。配体结合结构域中PXR的聚(ADP-核糖基)化可竞争性和牢固地激活PXR,促进其募集至目标基因CYP3A11启动子,并促进CYP3A11基因转录,从而导致APAP毒性代谢增加。此外,PXR沉默可拮抗PARP1对APAP诱导的肝毒性的作用。这些结果确定了PARPR通过PARP1的聚ADP-核糖基化是APAP诱导的肝损伤的关键步骤。我们建议抑制PARP1依赖的聚(ADP-核糖基)化可能代表一种新方法来治疗药物引起的肝毒性。

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