The N7-methylguanosine (m7G) methyltransferase Mettl1 has been recently implicated in cardiac repair and fibrosis. In this study we investigated the role of Mettl1 in mouse cardiomyocytes injury and the underlying mechanisms. Cardiac ischemia/reperfusion (I/R) I/R model was established in mice by ligation of the left anterior descending coronary artery (LAD) for 45âmin followed by reperfusion for 24âh. We showed the mRNA and protein levels of Mettl1 were significantly upregulated in mouse I/R hearts and H(2)O(2)-treated neonatal mouse cardiomyocytes (NMCMs). Mettl1 knockdown markedly ameliorated cardiac I/R injury, evidenced by decreased infarct size, apoptosis, and improved cardiac function. Overexpression of Mettl1 triggered cardiomyocytes apoptosis in vivo and in vitro. By performing RNA sequencing combined with m7G methylated RNA sequencing in Mettl1-overexpressing mouse hearts, we revealed that Mettl1 catalyzed m7G modification of the deubiquitinase cylindromatosis (CYLD) mRNA to increase the expression of CYLD, which enhanced the stability of P53 via abrogating its ubiquitination degradation. Vice versa, P53 served as a transcriptional factor to positively regulate Mettl1 expression during I/R injury. Knockdown of CYLD mitigated cardiomyocytes apoptosis induced by Mettl1 overexpression or oxidative stress. From the available drug-targets databases and literature, we identified 4 small molecule inhibitors of m7G modification. Sinefungin, one of the Mettl1 inhibitors exerted profound protection against cardiac I/R injury in vivo and in vitro. Collectively, this study has identified Mettl1 as a key regulator of cardiomyocyte apoptosis, and targeting the Mettl1-CYLD-P53 positive feedback circuit may represent a novel therapeutic avenue for alleviating cardiac I/R injury.
Mettl1 knockdown alleviates cardiac I/R injury in mice by inactivating the Mettl1-CYLD-P53 positive feedback loop.
Mettl1 敲除通过使 Mettl1-CYLD-P53 正反馈环路失活来减轻小鼠心脏 I/R 损伤
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作者:Yu Shu-Ting, Sun Zhi-Yong, Li Na, Qu Zhe-Zhe, Wang Chang-Hao, Ju Tian-Tian, Liu Ying-Qi, Mei Zhong-Ting, Liu Kui-Wu, Lu Mei-Xi, Huang Min, Li Ying, Dou Shun-Kang, Jiang Jian-Hao, Zhang Yao-Zhi, Huang Chuan-Hao, Pang Xiao-Chen, Jia Ying-Qiong, Dong Xian-Hui, Wu Fan, Zhang Yi, Li Wan-Hong, Yang Bao-Feng, Du Wei-Jie
| 期刊: | Acta Pharmacologica Sinica | 影响因子: | 8.400 |
| 时间: | 2025 | 起止号: | 2025 Mar;46(3):592-605 |
| doi: | 10.1038/s41401-024-01395-5 | 靶点: | P53 |
| 研究方向: | 毒理研究 | ||
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