n6 -甲基腺苷通过转录调控因子GLIS1调控肾脏衰老过程中的代谢重塑。

IF 4.4 1区 生物学 Q1 BIOLOGY BMC Biology Pub Date : 2024-12-31 DOI:10.1186/s12915-024-02100-y
Li Xu, Shuo Chen, Qiuling Fan, Yonghong Zhu, Hang Mei, Jiao Wang, Hongyuan Yu, Ying Chen, Fan Liu
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引用次数: 0

摘要

背景:以小管上皮细胞衰老和肾纤维化为特征的年龄相关性肾损害,对全球公共卫生构成了重大威胁。尽管n6 -甲基腺苷(m6A)甲基化与多种病理过程有关,但其在肾脏衰老中的调节机制尚不清楚。方法:采用m6A- mrna表转录组芯片技术,鉴定老年人肾组织中m6A异常修饰基因。采用组织病理学、免疫组化、免疫荧光染色、western blot、RT-qPCR等方法检测靶基因和m6A甲基转移酶在体内外的生物学功能。采用RNA免疫沉淀、染色质免疫沉淀、核糖体免疫沉淀和荧光素酶报告基因测定来研究m6A甲基转移酶、靶基因及其下游信号之间的特异性相互作用。结果:老龄人肾组织中m6A修饰水平明显降低。GLIS1被认为是一种“代谢重塑因子”,其蛋白水平显著降低,m6A修饰异常。GLIS1的下调通过将代谢重塑从脂肪酸氧化(FAO)转变为糖酵解,诱导细胞衰老和肾纤维化。此外,甲基化的GLIS1 mRNA受METTL3和YTHDF1异常表达的调控。沉默METTL3/YTHDF1削弱了GLIS1的翻译,破坏了FAO和糖酵解之间的平衡。结论:我们的研究结果表明,GLIS1的m6A修饰被METTL3激活,并以ythdf1依赖的方式减少,通过调节从FAO到糖酵解的代谢转变导致肾脏衰老。这一机制为肾脏衰老提供了一个有前景的治疗靶点。
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N6-methyladenosine regulates metabolic remodeling in kidney aging through transcriptional regulator GLIS1.

Background: Age-related kidney impairment, characterized by tubular epithelial cell senescence and renal fibrosis, poses a significant global public health threat. Although N6-methyladenosine (m6A) methylation is implicated in various pathological processes, its regulatory mechanism in kidney aging remains unclear.

Methods: An m6A-mRNA epitranscriptomic microarray was performed to identify genes with abnormal m6A modifications in aged human kidney tissues. Histological, immunohistochemical, and immunofluorescent staining, western blot, and RT-qPCR were employed to examine the biological functions of targeted genes and m6A methyltransferases both in vivo and in vitro. RNA immunoprecipitation, chromatin immunoprecipitation, ribosomal immunoprecipitation, and luciferase reporter assays were used to investigate the specific interactions between m6A methyltransferases, targeted genes, and their downstream signals.

Results: Significantly lower m6A modification levels were observed in aged human kidney tissues. GLIS1, identified as a "metabolic remodeling factor," showed significantly reduced protein levels with abnormal m6A modifications. The downregulation of GLIS1 induced cell senescence and renal fibrosis by shifting metabolic remodeling from fatty acid oxidation (FAO) to glycolysis. Additionally, the methylated GLIS1 mRNA was regulated by the abnormal expression of METTL3 and YTHDF1. Silencing METTL3/YTHDF1 weakened the translation of GLIS1 and disrupted the balance between FAO and glycolysis.

Conclusions: Our findings suggest that the m6A modification of GLIS1, activated by METTL3 and reduced in a YTHDF1-dependent manner, leads to kidney aging by regulating the metabolic shift from FAO to glycolysis. This mechanism provides a promising therapeutic target for kidney aging.

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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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