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YTHDF1介导的GBP4的m6A修饰促进急性肺损伤中M1巨噬细胞极化。

YTHDF1-mediated m6A modification of GBP4 promotes M1 macrophage polarization in acute lung injury.

作者信息

Cao Fengan, Wang Shilei, Tan Qiuyue, Hou Junna, Li Yunlu, Ma Wentao, Zhao Shilong, Gao Jing

机构信息

Department of Respiratory Intensive Care Unit, First Affiliated Hospital of Zhengzhou University, 450052, Zhengzhou, P. R. China.

出版信息

Respir Res. 2025 Jan 13;26(1):11. doi: 10.1186/s12931-024-03061-0.

Abstract

BACKGROUND

Acute lung injury (ALI) is a severe condition with multifaceted causes, including inflammation and oxidative stress. This research investigates the influence of m6A (N6-methyladenosine) modification on GBP4, a protein pivotal for macrophage polarization, a critical immune response in ALI.

METHODS

Utilizing a mouse model to induce ALI, the study analyzed GBP4 expression in alveolar macrophages. By overexpressing or knocking down GBP4, the study assessed its impact on M1 macrophage polarization. The role of YTHDF1 was also explored through knockdown experiments to determine its effect on GBP4 expression and macrophage polarization.

RESULTS

Increased GBP4 expression was noted in ALI model mice, promoting M1 macrophage polarization. YTHDF1 was found to enhance GBP4 expression by recognizing m6A sites on its mRNA, which was linked to reduced inflammation in MLE-12 cells upon YTHDF1 knockdown.

CONCLUSION

The study emphasizes the crucial roles of GBP4 and YTHDF1 in ALI development and immune response regulation. It suggests m6A modification as a potential therapeutic target, contributing to the understanding of ALI's molecular mechanisms and guiding future treatment strategies.

摘要

背景

急性肺损伤(ALI)是一种病因复杂的严重病症,包括炎症和氧化应激。本研究调查了m6A(N6-甲基腺苷)修饰对GBP4的影响,GBP4是巨噬细胞极化的关键蛋白,而巨噬细胞极化是ALI中的一种关键免疫反应。

方法

利用小鼠模型诱导ALI,该研究分析了肺泡巨噬细胞中GBP4的表达。通过过表达或敲低GBP4,该研究评估了其对M1巨噬细胞极化的影响。还通过敲低实验探索了YTHDF1的作用,以确定其对GBP4表达和巨噬细胞极化的影响。

结果

在ALI模型小鼠中观察到GBP4表达增加,促进了M1巨噬细胞极化。发现YTHDF1通过识别其mRNA上的m6A位点来增强GBP4表达,这与YTHDF1敲低后MLE-12细胞中炎症减轻有关。

结论

该研究强调了GBP4和YTHDF1在ALI发展和免疫反应调节中的关键作用。它表明m6A修饰作为一种潜在的治疗靶点,有助于理解ALI的分子机制并指导未来的治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bb1/11730786/6d520aa581dc/12931_2024_3061_Fig1_HTML.jpg

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