Deletion of p38γ attenuates ethanol consumption- and acetaminophen-induced liver injury in mice through promoting Dlg1

被引:0
作者
Shuang Hu
Yan Yao
Ze-yuan Wei
Shu-xian Wang
Yin-cui Wu
Ying Hu
Chen-chen Yang
Jing-li Min
Liang-yun Li
Hong Zhou
Jun-fa Yang
Jun Li
Tao Xu
机构
[1] Anhui Medical University,Inflammation and Immune Mediated Diseases Laboratory of Anhui Province, Anhui Institute of Innovative Drugs, School of Pharmacy
[2] Institute for Liver Diseases of Anhui Medical University,undefined
来源
Acta Pharmacologica Sinica | 2022年 / 43卷
关键词
fatty liver; steatohepatitis; acetaminophen; P38γ; ethanol; Dlg1;
D O I
暂无
中图分类号
学科分类号
摘要
Acetaminophen (APAP) is one of the major causes of drug-induced acute liver injury, and ethanol may aggravate APAP-induced liver injury. The problem of ethanol- and APAP-induced liver injury becomes increasingly prominent, but the mechanism of ethanol- and APAP-induced liver injury remains ambiguous. p38γ is one of the four isoforms of P38 mitogen activated protein kinases, that contributes to inflammation in different diseases. In this study we investigated the role of p38γ in ethanol- and APAP-induced liver injury. Liver injury was induced in male C57BL/6 J mice by giving liquid diet containing 5% ethanol (v/v) for 10 days, followed by gavage of ethanol (25% (v/v), 6 g/kg) once or injecting APAP (200 mg/kg, ip), or combined the both treatments. We showed that ethanol significantly aggravated APAP-induced liver injury in C57BL/6 J mice. Moreover, the expression level of p38γ was up-regulated in the liver of ethanol-, APAP- and ethanol+APAP-treated mice. Knockdown of p38γ markedly attenuated liver injury, inflammation, and steatosis in ethanol+APAP-treated mice. Liver sections of p38γ-knockdown mice displayed lower levels of Oil Red O stained dots and small leaky shapes. AML-12 cells were exposed to APAP (5 mM), ethanol (100 mM) or combined treatments. We showed that P38γ was markedly increased in ethanol+APAP-treated AML-12 cells, whereas knockdown of p38γ significantly inhibited inflammation, lipid accumulation and oxidative stress in ethanol+APAP-treated AML-12 cells. Furthermore, we revealed that p38γ could combine with Dlg1, a member of membrane-associated guanylate kinase family. Deletion of p38γ up-regulated the expression level of Dlg1 in ethanol+APAP-treated AML-12 cells. In summary, our results suggest that p38γ functions as an important regulator in ethanol- and APAP-induced liver injury through modulation of Dlg1.
引用
收藏
页码:1733 / 1748
页数:15
相关论文
共 234 条
[1]  
Tao Z(2021)Echinacoside ameliorates alcohol-induced oxidative stress and hepatic steatosis by affecting SREBP1c/FASN pathway via PPARalpha Food Chem Toxicol. 148 111956-94
[2]  
Zhang LH(2018)ACG clinical guideline: alcoholic liver disease Am J Gastroenterol 113 175-514
[3]  
Wu T(2018)DEP domain-containing mTOR-interacting protein suppresses lipogenesis and ameliorates hepatic steatosis and acute-on-chronic liver injury in alcoholic liver disease Hepatology. 68 496-61
[4]  
Fang XY(2017)Alcoholic liver disease: pathogenesis and current management Alcohol Res. 38 147-31
[5]  
Zhao LG(2016)Acetaminophen from liver to brain: New insights into drug pharmacological action and toxicity Pharmacol Res 109 119-62
[6]  
Singal AK(2016)Removal of acetaminophen protein adducts by autophagy protects against acetaminophen-induced liver injury in mice J Hepatol. 65 354-68 e955
[7]  
Bataller R(2020)Gut-resident lactobacilli activate hepatic Nrf2 and protect against oxidative liver injury Cell Metab. 31 956-7
[8]  
Ahn J(2018)Therapeutic potential of plants and plant derived phytochemicals against acetaminophen-induced liver injury Int J Mol Sci. 19 3776-6
[9]  
Kamath PS(1999)Acute hepatitis induced by greater celandine ( Gastroenterology. 117 1234-7
[10]  
Shah VH(2021)) Hepatology. 73 1634-44