Peridroplet mitochondria are associated with the severity of MASLD and the prevention of MASLD by diethyldithiocarbamate.

IF 5 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Lipid Research Pub Date : 2024-08-01 Epub Date: 2024-07-07 DOI:10.1016/j.jlr.2024.100590
Xiangyun Sun, Qinghong Yu, Yifei Qi, Bilian Kang, Xinyan Zhao, Lin Liu, Ping Wang, Min Cong, Tianhui Liu
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Abstract

Mitochondria can contact lipid droplets (LDs) to form peridroplet mitochondria (PDM) which trap fatty acids in LDs by providing ATP for triglyceride synthesis and prevent lipotoxicity. However, the role of PDM in metabolic dysfunction associated steatotic liver disease (MASLD) is not clear. Here, the features of PDM in dietary MASLD models with different severity in mice were explored. Electron microscope photographs show that LDs and mitochondria rarely come into contact with each other in normal liver. In mice fed with high-fat diet, PDM can be observed in the liver as early as the beginning of steatosis in hepatocytes. For the first time, we show that PDM in mouse liver varies with the severity of MASLD. PDM and cytosolic mitochondria were isolated from the liver tissue of MASLD and analyzed by quantitative proteomics. Compared with cytosolic mitochondria, PDM have enhanced mitochondrial respiration and ATP synthesis. Diethyldithiocarbamate (DDC) alleviates choline-deficient, L-amino acid-defined diet-induced MASLD, while increases PDM in the liver. Similarly, DDC promotes the contact of mitochondria-LDs in steatotic C3A cells in vitro. Meanwhile, DDC promotes triglyceride synthesis and improves mitochondrial dysfunction in MASLD. In addition, DDC upregulates perilipin 5 both in vivo and in vitro, which is considered as a key regulator in PDM formation. Knockout of perilipin 5 inhibits the contact of mitochondria-LDs induced by DDC in C3A cells. These results demonstrate that PDM might be associated with the progression of MASLD and the prevention of MASLD by DDC.

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线粒体周围与 MASLD 的严重程度以及二乙基二硫代氨基甲酸盐对 MASLD 的预防有关。
线粒体可与脂滴接触,形成脂滴周围线粒体(PDM),通过为甘油三酯合成提供 ATP 来捕获脂滴中的脂肪酸,防止脂肪毒性。然而,PDM 在代谢功能障碍相关脂肪性肝病(MASLD)中的作用尚不清楚。在此,研究人员探讨了 PDM 在不同严重程度的膳食 MASLD 模型小鼠中的特征。电子显微镜照片显示,在正常肝脏中,低密度脂蛋白和线粒体很少相互接触。在以高脂肪饮食喂养的小鼠中,早在肝细胞开始出现脂肪变性时,就能在肝脏中观察到 PDM。我们首次发现,小鼠肝脏中的 PDM 随 MASLD 的严重程度而变化。我们从 MASLD 的肝组织中分离出了 PDM 和细胞线粒体(CM),并对其进行了定量蛋白质组学分析。与 CM 相比,PDM 的线粒体呼吸和 ATP 合成能力更强。二乙基二硫代氨基甲酸(DDC)可缓解胆碱缺乏、L-氨基酸定义饮食诱导的MASLD,同时增加肝脏中的PDM。同样,DDC 在体外促进脂肪肝 C3A 细胞线粒体-线粒体的接触。同时,DDC 还能促进甘油三酯的合成,改善 MASLD 的线粒体功能障碍。此外,DDC 还能在体内和体外上调被认为是 PDM 形成关键调节因子的周脂素 5。敲除 Plin5 可抑制 DDC 在 C3A 细胞中诱导的线粒体-LDs 接触。这些结果表明,PDM可能与MASLD的进展以及DDC对MASLD的预防有关。调节PDM可能是治疗MASLD的一种新的药物策略。
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来源期刊
Journal of Lipid Research
Journal of Lipid Research 生物-生化与分子生物学
CiteScore
11.10
自引率
4.60%
发文量
146
审稿时长
41 days
期刊介绍: The Journal of Lipid Research (JLR) publishes original articles and reviews in the broadly defined area of biological lipids. We encourage the submission of manuscripts relating to lipids, including those addressing problems in biochemistry, molecular biology, structural biology, cell biology, genetics, molecular medicine, clinical medicine and metabolism. Major criteria for acceptance of articles are new insights into mechanisms of lipid function and metabolism and/or genes regulating lipid metabolism along with sound primary experimental data. Interpretation of the data is the authors’ responsibility, and speculation should be labeled as such. Manuscripts that provide new ways of purifying, identifying and quantifying lipids are invited for the Methods section of the Journal. JLR encourages contributions from investigators in all countries, but articles must be submitted in clear and concise English.
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