Mettl3-mediated m6A modification plays a role in lipid metabolism disorders and progressive liver damage in mice by regulating lipid metabolism-related gene expression

Guanqi Dai, Shihao Huang, Yonglong Li, Xueyi Tu, Jiawei Xia, Zhihao Zhou, Wanyi Chen, Ao Zhang, Jintao Lin, Yingchun Li, Dan-hua He, Tao-yan Lin, Jing Cong, Ye Lei, Liuxin Han, Zhenxia Yao, Weiwei Liu, Ying Zhou, Qiwen Li, Jing Li, Yuqin Zhang, Aibing Wu, Dong Xiao, Wanshan Wang, Wen-tao Zhao, Jun-shuang Jia, Xiaolin Lin
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引用次数: 1

Abstract

Aims: N6-methyladenosine (m6A), the most abundant and conserved epigenetic modification of mRNA, participates in various physiological and pathological processes. However, the roles of m6A modification in liver lipid metabolism have yet to be understood entirely. We aimed to investigate the roles of the m6A “writer” protein methyltransferase-like 3 (Mettl3) in liver lipid metabolism and the underlying mechanisms. Main Methods: We assessed the expression of Mettl3 in liver tissues of diabetes (db/db) mice, obese (ob/ob) mice, high saturated fat-, cholesterol-, and fructose-induced non-alcoholic fatty liver disease (NAFLD) mice, and alcohol abuse and alcoholism (NIAAA) mice by quantitative reverse-transcriptase PCR (qRT-PCR). Hepatocyte-specific Mettl3 knockout mice were used to evaluate the effects of Mettl3 deficiency in mouse liver. The molecular mechanisms underlying the roles of Mettl3 deletion in liver lipid metabolism were explored by multi-omics joint analysis of public data from the Gene Expression Omnibus database and further validated by qRT-PCR and Western blot. Key Findings: Significantly decreased Mettl3 expression was associated with NAFLD progression. Hepatocyte-specific knockout of Mettl3 resulted in significant lipid accumulation in the liver, increased serum total cholesterol levels, and progressive liver damage in mice. Mechanistically, loss of Mettl3 significantly downregulated the expression levels of multiple m6A-modified mRNAs related to lipid metabolism, including Adh7, Cpt1a, and Cyp7a1, further promoting lipid metabolism disorders and liver injury in mice. Significance: In summary, our findings demonstrate that the expression alteration of genes related to lipid metabolism by Mettl3-mediated m6A modification contributes to the development of NAFLD.
mettl3介导的m6A修饰通过调节脂质代谢相关基因的表达,在小鼠脂质代谢紊乱和进行性肝损伤中发挥作用
目的:n6 -甲基腺苷(n6 - methylladenosine, m6A)是mRNA中最丰富、最保守的表观遗传修饰,参与多种生理和病理过程。然而,m6A修饰在肝脏脂质代谢中的作用尚未完全了解。我们旨在研究m6A“writer”蛋白甲基转移酶样3 (Mettl3)在肝脏脂质代谢中的作用及其潜在机制。主要方法:采用定量逆转录酶PCR (qRT-PCR)检测Mettl3在糖尿病(db/db)小鼠、肥胖(ob/ob)小鼠、高饱和脂肪、胆固醇和果糖诱导的非酒精性脂肪性肝病(NAFLD)小鼠和酒精滥用和酒精中毒(NIAAA)小鼠肝组织中的表达。采用肝细胞特异性Mettl3敲除小鼠来评价Mettl3缺乏对小鼠肝脏的影响。通过多组学联合分析来自Gene Expression Omnibus数据库的公开数据,并通过qRT-PCR和Western blot进一步验证Mettl3缺失在肝脏脂质代谢中作用的分子机制。主要发现:显著降低Mettl3表达与NAFLD进展相关。肝细胞特异性敲除Mettl3导致肝脏中显著的脂质积累,血清总胆固醇水平升高,小鼠肝损伤进行性。在机制上,Mettl3的缺失显著下调了多种m6a修饰的脂质代谢相关mrna的表达水平,包括Adh7、Cpt1a和Cyp7a1,进一步促进了小鼠脂质代谢紊乱和肝损伤。综上所述,我们的研究结果表明,通过mettl3介导的m6A修饰,脂质代谢相关基因的表达改变有助于NAFLD的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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