Suppr超能文献

跨肝脏疾病的转录组分析揭示了胆汁淤积中组成型雄甾烷受体的疾病调节激活。

Transcriptomic analysis across liver diseases reveals disease-modulating activation of constitutive androstane receptor in cholestasis.

作者信息

Mathur Bhoomika, Arif Waqar, Patton Megan E, Faiyaz Rahiman, Liu Jian, Yeh Jennifer, Harpavat Sanjiv, Schoonjans Kristina, Kalsotra Auinash, Wheatley Antony M, Anakk Sayeepriyadarshini

机构信息

Department of Molecular and Integrative Physiology, University of Illinois at Urbana-Champaign, Urbana, IL, USA.

Department of Biochemistry, University of Illinois at Urbana-Champaign, Urbana, IL, USA.

出版信息

JHEP Rep. 2020 Jul 2;2(5):100140. doi: 10.1016/j.jhepr.2020.100140. eCollection 2020 Oct.

Abstract

BACKGROUND & AIMS: Liver diseases are caused by many factors, such as genetics, nutrition, and viruses. Therefore, it is important to delineate transcriptomic changes that occur in various liver diseases.

METHODS

We performed high-throughput sequencing of mouse livers with diverse types of injuries, including cholestasis, diet-induced steatosis, and partial hepatectomy. Comparative analysis of liver transcriptome from mice and human samples of viral infections (HBV and HCV), alcoholic hepatitis (AH), non-alcoholic steatohepatitis (NASH), and biliary atresia revealed distinct and overlapping gene profiles associated with liver diseases. We hypothesised that discrete molecular signatures could be utilised to assess therapeutic outcomes. We focused on cholestasis to test and validate the hypothesis using pharmacological approaches.

RESULTS

Here, we report significant overlap in the expression of inflammatory and proliferation-related genes across liver diseases. However, cholestatic livers were unique and displayed robust induction of genes involved in drug metabolism. Consistently, we found that constitutive androstane receptor (CAR) activation is crucial for the induction of the drug metabolic gene programme in cholestasis. When challenged, cholestatic mice were protected against zoxazolamine-induced paralysis and acetaminophen-induced hepatotoxicity. These protective effects were diminished upon inhibition of CAR activity. Further, drug metabolic genes were also induced in the livers from a subset of biliary atresia patients, but not in HBV and HCV infections, AH, or NASH. We also found a higher expression of CYP2B6, a CAR target, in the livers of biliary atresia patients, underscoring the clinical importance of our findings.

CONCLUSIONS

Comparative transcriptome analysis of different liver disorders revealed specific induction of phase I and II metabolic genes in cholestasis. Our results demonstrate that CAR activation may lead to variations in drug metabolism and clinical outcomes in biliary atresia.

LAY SUMMARY

Transcriptomic analysis of diverse liver diseases revealed alterations in common and distinct pathways. Specifically, in cholestasis, we found that detoxification genes and their activity are increased. Thus, cholestatic patients may have an unintended consequence on drug metabolism and not only have a beneficial effect against liver toxicity, but also may require adjustments to their therapeutic dosage.

摘要

背景与目的

肝脏疾病由多种因素引起,如遗传、营养和病毒等。因此,描绘各种肝脏疾病中发生的转录组变化非常重要。

方法

我们对多种类型损伤的小鼠肝脏进行了高通量测序,包括胆汁淤积、饮食诱导的脂肪变性和部分肝切除术。对小鼠肝脏转录组与人类病毒感染(HBV和HCV)、酒精性肝炎(AH)、非酒精性脂肪性肝炎(NASH)和胆道闭锁样本的比较分析揭示了与肝脏疾病相关的独特且重叠的基因谱。我们假设离散的分子特征可用于评估治疗结果。我们聚焦于胆汁淤积,使用药理学方法来检验和验证这一假设。

结果

在此,我们报告了肝脏疾病中炎症和增殖相关基因表达的显著重叠。然而,胆汁淤积性肝脏具有独特性,且显示出参与药物代谢的基因的强烈诱导。一致地,我们发现组成型雄甾烷受体(CAR)激活对于胆汁淤积中药物代谢基因程序的诱导至关重要。受到挑战时,胆汁淤积小鼠对唑沙宗诱导的麻痹和对乙酰氨基酚诱导的肝毒性具有保护作用。抑制CAR活性后,这些保护作用减弱。此外,药物代谢基因在一部分胆道闭锁患者的肝脏中也有诱导,但在HBV和HCV感染、AH或NASH中未诱导。我们还发现CAR靶点CYP2B6在胆道闭锁患者肝脏中的表达较高,突出了我们研究结果的临床重要性。

结论

不同肝脏疾病的比较转录组分析揭示了胆汁淤积中I期和II期代谢基因的特异性诱导。我们的结果表明,CAR激活可能导致胆道闭锁中药物代谢和临床结果的变化。

简述

对多种肝脏疾病的转录组分析揭示了常见和独特途径中的改变。具体而言,在胆汁淤积中,我们发现解毒基因及其活性增加。因此,胆汁淤积患者可能对药物代谢产生意外影响,不仅对肝毒性有有益作用,还可能需要调整治疗剂量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccba/7452294/ed20ffc4b3d9/fx1.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验