Regulation of hepatocyte phospholipid peroxidation signaling by a Chinese patent medicine against psychological stress-induced liver injury

脂质过氧化 肝细胞 氧化应激 肝损伤 磷脂 药理学 昼夜节律 化学 内分泌学 内科学 医学 生物化学 细胞生物学 生物 体外
作者
Qingqing Zhou,Yanping Wu,Pei Liu,Wen-Zhe Deng,Yu-Hui Lu,Haibiao Gong,Xiaomin Lin,Wan‐Yang Sun,Rong Wang,Feng Huang,Yun‐Feng Cao,Yifang Li,Hiroshi Kurihara,Shu‐Hua Ouyang,Lei Liang,Rong‐Rong He
出处
期刊:Phytomedicine [Elsevier BV]
卷期号:129: 155613-155613 被引量:3
标识
DOI:10.1016/j.phymed.2024.155613
摘要

Psychological stress is associated with various diseases including liver dysfunction, yet effective intervention strategies remain lacking due to the unrevealed pathogenesis mechanism. This study aims to explore the relevance between BMAL1-controlled circadian rhythms and lipoxygenase 15 (ALOX15)-mediated phospholipids peroxidation in psychological stress-induced liver injury, and to investigate whether hepatocyte phospholipid peroxidation signaling involved in the hepatoprotective effects of a Chinese patent medicine, Pien Tze Huang (PZH). Restraint stress models were established to investigate the underlying molecular mechanisms of psychological stress-induced liver injury and the hepatoprotective effects of PZH. Redox lipidomics based on liquid chromatography-tandem mass spectrometry was applied for lipid profiling. The present study discovered that acute restraint stress could induce liver injury. Notably, lipidomic analysis confirmed that phospholipid peroxidation was accumulated in the livers of stressed mice. Additionally, the essential core circadian clock gene Brain and Muscle Arnt-like Protein-1 (Bmal1) was altered in stressed mice. Circadian disruption in mice, as well as BMAL1-overexpression in human HepaRG cells, also appeared to have a significant increase in phospholipid peroxidation, suggesting that stress-induced liver injury is closely related to circadian rhythm and phospholipid peroxidation. Subsequently, arachidonate 15-lipoxygenase (ALOX15), a critical enzyme that contributed to phospholipid peroxidation, was screened as a potential regulatory target of BMAL1. Mechanistically, BMAL1 promoted ALOX15 expression via direct binding to an E-box-like motif in the promoter. Finally, this study revealed that PZH treatment significantly relieved pathological symptoms of psychological stress-induced liver injury with a potential mechanism of alleviating ALOX15-mediatied phospholipid peroxidation. Our findings illustrate the critical role of BMAL1-triggered phospholipid peroxidation in psychological stress-induced liver injury and provide new insight into treating psychological stress-associated liver disease by TCM intervention.
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