打破铁超载和miR-122的协同作用,以挽救MASLD中的脂质积累和过氧化

IF 9.1 2区 医学 Q1 PHARMACOLOGY & PHARMACY
Yuxiao Tang , Zelong Gao , Jianxin Yang , Chenqi Li , Weili Wang , Chenghua Wu , Mengpu Wu , Min Li , Huiwen Wu , Yan Sun , Hongwei Zhang , Yifeng Chai , Feng Xie , Jianxin Qian , Hui Shen , Dongyao Wang
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引用次数: 0

摘要

MASLD是一种多因素疾病,其特定亚型以肝铁超载和miR-122缺失为特征,miR-122是一种调节肝脂质稳态的肝脏特异性microRNA。之前我们报道了铁超载降低miR-122的机制。有趣的是,我们发现缺乏miR-122的小鼠对铁超载诱导的脂肪变性和纤维化高度敏感。本研究旨在揭示miR-122的下游机制和预防措施。我们首先验证了MASLD中铁相关基因和miR-122的减少。通过LC-MS/MS和气相色谱,我们发现miR-122敲除和铁过载的结合显著增加了多不饱和脂肪酸(PUFAs)的产生和过氧化。然而,miR-122敲除本身仅引起脂质积累,提示miR-122敲除和铁过载在脂质过氧化中的协同作用。然后,我们通过转录组和蛋白质组分析确定了参与PUFA产生和过氧化的关键酶。在机制上,miR-122和铁通过Aacs调节脂肪酸合成,通过Fads2调节脂肪酸去饱和,通过CYPs调节PUFAs氧化。通过重组腺相关病毒或agomir重新补充miR-122有效地打破了miR-122敲除和体内铁超载的协同作用。我们进一步设计了miR-122表达报告细胞模型,对2543种天然化合物进行高通量筛选,最终发现并验证了二氢小檗碱可以上调miR-122的表达,纠正铁超载引起的脂质紊乱。这些结果确定了miR-122和铁在PUFAs产生和过氧化中的协同作用,并提出了二氢小檗碱作为MASLD预防和治疗候选药物的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Breaking the synergism of iron overload and miR-122 to rescue lipid accumulation and peroxidation in MASLD
MASLD is a multifactorial disease with specific subtypes being featured by hepatic iron overload and loss of miR-122, a liver-specific microRNA regulating hepatic lipid homeostasis. Previously we reported the mechanism of iron overload decreasing miR-122. Interestingly, we found that mice lacking miR-122 were highly sensitive to iron overload-induced steatosis and fibrosis. The present study aimed to disclose the downstream mechanisms and the preventive measures targeting miR-122. We first validated the decreases in iron-related genes and miR-122 in MASLD. By using LC-MS/MS and gas-chromatography, we found that the combination of miR-122 knockout and iron overload significantly increased the production and peroxidation of polyunsaturated fatty acids (PUFAs). However, miR-122 knockout itself only incurred lipid accumulation, suggesting a synergistic effect of miR-122 knockout and iron overload in lipid peroxidation. We then located the key enzymes involved in PUFA production and peroxidation by the transcriptome and proteome analysis. Mechanistically, miR-122 and iron regulated fatty acid synthesis through Aacs, fatty acid desaturation through Fads2, and PUFAs oxidation through CYPs. Re-supplementation of miR-122 by recombinant adeno-associated virus or agomir effectively broke the synergism of miR-122 knockout and iron overload in vivo. We further designed a miR-122 expression reporter cell model for high-throughput screening on 2543 natural compounds, and eventually found and validated that the dihydroberberine could upregulate miR-122 expression and correct iron overload-induced lipid disorders. These results identified the synergistic role of miR-122 and iron in PUFAs production and peroxidation, and also proposed the potential application of dihydroberberine as a preventive and therapeutic candidate for MASLD.
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来源期刊
Pharmacological research
Pharmacological research 医学-药学
CiteScore
18.70
自引率
3.20%
发文量
491
审稿时长
8 days
期刊介绍: Pharmacological Research publishes cutting-edge articles in biomedical sciences to cover a broad range of topics that move the pharmacological field forward. Pharmacological research publishes articles on molecular, biochemical, translational, and clinical research (including clinical trials); it is proud of its rapid publication of accepted papers that comprises a dedicated, fast acceptance and publication track for high profile articles.
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