硒通过外泌体miR-22/FGFR1途径缓解草鱼高脂肪饮食诱导的肝细胞脂质积累。

IF 4.8 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Chi Wang , Xiaotian Zhang , Guohao Liu , Cheng Zhang, Pengju Li, Pan He, Sha Liu, Hong Ji, Haibo Yu
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引用次数: 0

摘要

本研究旨在通过miRNA测序、转染miRNA模拟物(miR-22m)或抑制剂(miR-22i)、肝细胞源性外泌体的分离和处理以及脂质代谢相关基因和蛋白的检测,探讨外泌体miRNA是否参与草鱼肝脏硒(Se)的脂质还原。mirna测序和生物信息学显示,在硒处理后的差异表达mirna中,miR-22的表达量最高,并且在脂质代谢相关途径中富集。硒显著上调草鱼肝脏或肝细胞中miR-22水平,降低其脂质含量。此外,miR-22m显著提高了草鱼肝细胞中miR-22的水平,降低了脂质含量,这与硒处理一致。然而,miR-22i逆转了这些趋势。此外,miR-22抑制FGFR1-PI3K-AKT-mTOR信号通路及其与脂质合成相关的下游基因。更重要的是,富miR-22的硒处理肝细胞外泌体显著降低了油酸处理肝细胞中的甘油三酯含量。综上所述,硒通过上调miR-22的表达来缓解草鱼肝脏中高脂诱导的脂质积累,miR-22负调控FGFR1及其下游调控基因。此外,外泌体通过硒参与脂质降低,这可能是通过携带miR-22。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Selenium alleviates high-fat diet induced hepatocyte lipid accumulation via exosome miR-22/FGFR1 pathway in grass carp

Selenium alleviates high-fat diet induced hepatocyte lipid accumulation via exosome miR-22/FGFR1 pathway in grass carp
The current study aims to investigate whether exosomal miRNAs are involved in lipid reduction by selenium (Se) in the liver of grass carp, through miRNA sequencing, transfection of miRNA mimic (miR-22m) or inhibitor (miR-22i), isolation of hepatocyte-derived exosomes and treatment, and detection of lipid metabolism-related genes and proteins. The miRNAs sequencing and bioinformatics revealed that miR-22 was most abundantly expressed in the differentially expressed miRNAs after selenium treatment, and was enriched in lipid metabolism-related pathways. Moreover, Se significantly up-regulated the miR-22 levels and reduced the lipid content in liver or hepatocytes of grass carp. Furthermore, the miR-22m significantly increased levels of miR-22 and reduced lipid content in grass carp hepatocytes, which were consistent with the Se-treatment. However, the miR-22i reversed these trends. Besides, the miR-22 suppressed the FGFR1-PI3K-AKT-mTOR signaling pathway and its downstream genes related to lipid synthesis. More importantly, the Se-treated hepatocyte-exosomes which were enriched in the miR-22 significantly reduced the triglycerides content in the oleic acid-treated hepatocytes. In summary, Se alleviated high fat-induced lipid accumulation in grass carp liver by up-regulating the expression of miR-22 which negatively regulates FGFR1 and its downstream regulatory genes. Moreover, exosomes participate in the lipid reduction by Se, which may be through carrying miR-22.
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来源期刊
Journal of Nutritional Biochemistry
Journal of Nutritional Biochemistry 医学-生化与分子生物学
CiteScore
9.50
自引率
3.60%
发文量
237
审稿时长
68 days
期刊介绍: Devoted to advancements in nutritional sciences, The Journal of Nutritional Biochemistry presents experimental nutrition research as it relates to: biochemistry, molecular biology, toxicology, or physiology. Rigorous reviews by an international editorial board of distinguished scientists ensure publication of the most current and key research being conducted in nutrition at the cellular, animal and human level. In addition to its monthly features of critical reviews and research articles, The Journal of Nutritional Biochemistry also periodically publishes emerging issues, experimental methods, and other types of articles.
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