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TET3是一种调节因子,可作为心肌纤维化干预的靶点。

TET3 is a regulator and can be targeted for the intervention of myocardial fibrosis.

作者信息

Zhu Chenghao, Hong Wenxuan, Zhu Yuwen, Xue Yujia, Fang Zemin, Jiang Dingsheng, Xu Yong, Kong Ming

机构信息

State Key Laboratory of Natural Medicines, Department of Pharmacology, China Pharmaceutical University, Nanjing, China.

Department of Cardiology, Affiliated Hospital of Jiangnan University, Wuxi, China.

出版信息

EMBO Mol Med. 2025 Sep 8. doi: 10.1038/s44321-025-00305-4.

Abstract

Cardiac fibrosis contributes to adverse cardiac remodeling and loss of heart function eventually leading to heart failure (HF). Resident cardiac fibroblasts are the principal source of myofibroblasts that produce extracellular matrix proteins to mediate cardiac fibrosis. We report that TET3 depletion in cultured cardiac fibroblasts blocked transition to myofibroblasts in response to different pro-fibrogenic stimuli. Consistently, deletion of TET3 from quiescent or activated fibroblast (myofibroblast) attenuated cardiac fibrosis and rescued heart function in mice. Importantly, a small-molecule TET3-specific degrader Bobcat339 displayed therapeutic potential by mitigating cardiac fibrosis and normalizing heart function when administered post-surgery. Integrated transcriptomic analysis identified the mechanosensor Piezo2 as a downstream target for TET3. Piezo2 inhibition dampened fibroblast activation in vitro and ameliorated cardiac fibrosis in vivo. Mechanistically, Piezo2 promoted fibroblast activation by modulating the activities of mechanosensitive transcription factors. Finally, relevance of TET3 and Piezo2 was verified in heart specimens collected from HF patients. In conclusion, our data demonstrate that TET3 is a pivotal regulator of cardiac fibrosis and can be potentially targeted for the intervention of heart failure.

摘要

心脏纤维化会导致不良的心脏重塑和心脏功能丧失,最终导致心力衰竭(HF)。心脏驻留成纤维细胞是产生细胞外基质蛋白以介导心脏纤维化的肌成纤维细胞的主要来源。我们报告称,培养的心脏成纤维细胞中TET3缺失可阻止其在不同促纤维化刺激下向肌成纤维细胞的转变。同样,在静止或活化的成纤维细胞(肌成纤维细胞)中删除TET3可减轻小鼠的心脏纤维化并挽救心脏功能。重要的是,一种小分子TET3特异性降解剂Bobcat339在手术后给药时,通过减轻心脏纤维化和使心脏功能正常化显示出治疗潜力。综合转录组分析确定机械传感器Piezo2是TET3的下游靶点。抑制Piezo2可在体外抑制成纤维细胞活化,并在体内改善心脏纤维化。从机制上讲,Piezo2通过调节机械敏感转录因子的活性来促进成纤维细胞活化。最后,在从HF患者收集的心脏标本中验证了TET3和Piezo2的相关性。总之,我们的数据表明TET3是心脏纤维化的关键调节因子,并且可能成为干预心力衰竭的潜在靶点。

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