Autophagy Regulates Ferroptosis-Mediated Diabetic Liver Injury by Modulating the Degradation of ACSL4.

IF 3.6 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Journal of Diabetes Research Pub Date : 2024-12-24 eCollection Date: 2024-01-01 DOI:10.1155/jdr/7146054
Liangxiu Wu, Weicheng Lai, Lanlan Li, Sen Yang, Fengjuan Li, Chen Yang, Xiaobing Gong, Liangyan Wu
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Abstract

Background: Diabetic liver injury is a serious complication due to the lack of effective treatments and the unclear pathogenesis. Ferroptosis, a form of cell death involving reactive oxygen species (ROS)-dependent lipid peroxidation (LPO), is closely linked to autophagy and diabetic complications. Therefore, this study is aimed at investigating the role of autophagy in regulating ferroptosis by modulating the degradation of acyl-CoA synthetase long-chain family member 4 (ACSL4) in diabetic hepatocytes and its potential impact on diabetic liver injury. Methods: Initially, ferroptosis and autophagy were assessed in liver tissues from streptozotocin-induced diabetic rats and in palmitic acid (PA)-treated LO2 cells. Subsequently, the study focused on elucidating the regulatory role of autophagy in mediating ferroptosis through the modulation of ACSL4 expression in PA-treated LO2 cells. Results: The results demonstrated that ACSL4-mediated ferroptosis and inhibition of autophagy were observed in diabetic hepatocytes in vivo and in PA-treated LO2 cells. Additionally, the ferroptosis inhibitor was able to mitigate the PA-induced cell death in LO2 cells. Mechanistically, the stability and expression level of the ACSL4 protein were upregulated and primarily degraded via the autophagy-lysosome pathway in PA-treated LO2 cells. The use of the autophagy inhibitor 3-methyladenine (3-MA) and the inducer rapamycin further demonstrated that autophagy regulated ferroptosis by mediating ACSL4 degradation, highlighting its critical role in diabetic liver injury. Conclusions: These results elucidate the roles of ferroptosis, autophagy, and their interactions in the pathogenesis of diabetic liver injury, offering potential therapeutic targets. Furthermore, they shed light on the pathogenesis of ferroptosis and other diabetic complications.

自噬通过调节ACSL4的降解调节凋亡铁介导的糖尿病肝损伤。
背景:糖尿病性肝损伤是一种严重的并发症,由于缺乏有效的治疗和发病机制尚不清楚。Ferroptosis是一种涉及活性氧(ROS)依赖性脂质过氧化(LPO)的细胞死亡形式,与自噬和糖尿病并发症密切相关。因此,本研究旨在探讨自噬通过调节糖尿病肝细胞中酰基辅酶a合成酶长链家族成员4 (ACSL4)的降解在调节铁下垂中的作用及其对糖尿病肝损伤的潜在影响。方法:首先观察链脲霉素诱导的糖尿病大鼠肝组织和棕榈酸(PA)处理的LO2细胞的铁下垂和自噬。随后,本研究重点阐明了自噬通过调节pa处理的LO2细胞中ACSL4的表达在介导铁下垂中的调节作用。结果:acsl4对糖尿病肝细胞和pa处理的LO2细胞均有诱导铁下垂和自噬抑制作用。此外,铁下垂抑制剂能够减轻pa诱导的LO2细胞死亡。在pa处理的LO2细胞中,ACSL4蛋白的稳定性和表达水平上调,并主要通过自噬-溶酶体途径降解。自噬抑制剂3-甲基腺嘌呤(3-MA)和诱导剂雷帕霉素的应用进一步证明了自噬通过介导ACSL4降解调节铁凋亡,突出了其在糖尿病肝损伤中的重要作用。结论:这些结果阐明了铁下垂、自噬及其相互作用在糖尿病肝损伤发病机制中的作用,提供了潜在的治疗靶点。此外,他们阐明了铁下垂和其他糖尿病并发症的发病机制。
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来源期刊
Journal of Diabetes Research
Journal of Diabetes Research ENDOCRINOLOGY & METABOLISM-MEDICINE, RESEARCH & EXPERIMENTAL
CiteScore
8.40
自引率
2.30%
发文量
152
审稿时长
14 weeks
期刊介绍: Journal of Diabetes Research is a peer-reviewed, Open Access journal that publishes research articles, review articles, and clinical studies related to type 1 and type 2 diabetes. The journal welcomes submissions focusing on the epidemiology, etiology, pathogenesis, management, and prevention of diabetes, as well as associated complications, such as diabetic retinopathy, neuropathy and nephropathy.
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阿拉丁
palmitic acid
阿拉丁
PA
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