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METTL3依赖的YTHDF2介导结节性硬化症复合物1(TSC1)表达,以调节肺泡上皮-间充质转化并促进特发性肺纤维化。

METTL3-Dependent YTHDF2 Mediates TSC1 Expression to Regulate Alveolar Epithelial Mesenchymal Transition and Promote Idiopathic Pulmonary Fibrosis.

作者信息

Liu Min, Sheng Yingying, Li Mengyu, Pan Tianyu, Jiang Wei, Zhang Yafei, Pan Xin, Huang Cheng, Li Jun, Wang Yuanyuan

机构信息

Key Laboratory of Inflammation and Immune-Mediated Diseases of Anhui Province, Anhui Institute of Innovative Drugs, School of Pharmacy, Anhui Medical University, Hefei, Anhui Province, China.

Department of Pharmacy, The Second Affiliated Hospital of Anhui Medical University, Hefei, Anhui Province, China.

出版信息

J Cell Physiol. 2025 Jan;240(1):e31473. doi: 10.1002/jcp.31473. Epub 2024 Nov 28.

Abstract

Diffuse, progressive interstitial lung disease with few treatment options and low survival rates is known as idiopathic pulmonary fibrosis (IPF). Alveolar epithelial cell damage and dysfunction are the main features of IPF. TSC1 has been documented to exert a pivotal function in governing cellular growth, proliferation, and ontogenesis. This work investigated TSC1's function and mechanism in IPF. Mice were given BLM to cause pulmonary fibrosis, and A549 cells underwent epithelial mesenchymal transition (EMT) in response to TGF-β1. According to the data, TSC1 expression was reduced in IPF. Overexpression of TSC1 was established by adenopathy-associated virus in vivo and adenovirus in vitro to significantly block the EMT process. Besides, the findings from the RNA-sequencing analysis indicate that overexpression of TSC1 mitigated the EMT process by suppressing the activation of the AKT/mTOR pathway via downregulation of ACTN4 expression. To examine the upstream regulatory mechanism, we employed the SRAMP database to predict mA modification of TSC1 mRNA, followed by verification of mA modification levels and expression using MERIP-qPCR, Dot blot, RT-qPCR, and WB. The results indicated a high degree of mA modification in TSC1 mRNA in pulmonary fibrosis. The expression of METTL3 was further found to be significantly elevated. METTL3 knockdown impeded EMT progression. METTL3 inhibits TSC1 expression by increasing TSC1 mA modification through the reading protein YTHDF2. In conclusion, our study elucidated that the METTL3/YTHDF2/TSC1 signaling axis activates the AKT/mTOR pathway to promote the development of IPF. This study provides potential molecular-level therapeutic targets for IPF disease.

摘要

弥漫性、进行性间质性肺病,治疗选择少且生存率低,被称为特发性肺纤维化(IPF)。肺泡上皮细胞损伤和功能障碍是IPF的主要特征。已有文献证明TSC1在调控细胞生长、增殖和个体发育中发挥关键作用。这项研究调查了TSC1在IPF中的功能和机制。给小鼠注射博来霉素以诱导肺纤维化,A549细胞在转化生长因子-β1作用下发生上皮-间质转化(EMT)。根据数据,IPF中TSC1表达降低。通过腺相关病毒在体内和腺病毒在体外建立TSC1过表达,以显著阻断EMT过程。此外,RNA测序分析结果表明,TSC1过表达通过下调ACTN4表达抑制AKT/mTOR途径的激活,从而减轻EMT过程。为了研究上游调控机制,我们使用SRAMP数据库预测TSC1 mRNA的m6A修饰,随后使用甲基化RNA免疫沉淀定量PCR(MERIP-qPCR)、斑点印迹、逆转录定量PCR(RT-qPCR)和蛋白质免疫印迹(WB)验证m6A修饰水平和表达。结果表明肺纤维化中TSC1 mRNA存在高度的m6A修饰。进一步发现甲基转移酶样蛋白3(METTL3)的表达显著升高。敲低METTL3可阻碍EMT进程。METTL3通过阅读蛋白YTHDF2增加TSC1的m6A修饰来抑制TSC1表达。总之,我们的研究阐明了METTL3/YTHDF2/TSC1信号轴激活AKT/mTOR途径以促进IPF的发展。这项研究为IPF疾病提供了潜在的分子水平治疗靶点。

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