Lang Zhibin, Fan Xiaozhen, Qiu Lin, Hou Shuhui, Zhou Junhui, Lin Hongqi
Department of Anesthesia and Perioperative Medicine, Fuwai Central China Cardiovascular Hospital, Central China Fuwai Hospital of Zhengzhou University, Heart Center of Henan Provincial People's Hospital, Henan University People's Hospital, Zhengzhou, China.
Department of Laboratory Medicine, Henan Provincial People's Hospital, People's Hospital of Zhengzhou University, Zhengzhou, China.
Cell Biol Toxicol. 2025 May 7;41(1):80. doi: 10.1007/s10565-025-10036-4.
Myocardial fibrosis constitutes the primary pathological characteristic of myocardial infarction (MI). The activation and proliferation of myocardial fibroblasts serve as crucial factors in the process of the development of fibrosis in the myocardium. Our research delved into the role that Rap2a plays in cardiac function as well as myocardial fibrosis, while its effects on cardial fibroblasts (CFs) proliferation, migration, and phenotypic transformation were also explored. Examination of the GEO database showed a notable increase in the expression of Rap2a within myocardial tissue from mice with MI compared to normal mice. Rap2a deficiency relieves MI in mice and restrains the phenotypic transition, proliferation, and migration of CFs. The absence of Rap2a mitigates MI in mice. Besides, it curbs the growth of CFs, restricts their movement, and prevents them from undergoing phenotypic conversion. Rap2a can bind to TNIK in myocardial fibroblasts and enhance TNIK expression; Merlin/YAP signaling pathway was assessed as a downstream target of TNIK to further elucidate the regulatory mechanism through which Rap2a influences cardiomyocytes. In conclusion, this study provides evidence that Rap2a promotes myocardial fibrosis through mediating the myofibroblast transformation, proliferation, and migration of CFs via the TNIK/Merlin/YAP pathway, thereby exacerbating symptoms of myocardial infarction.
心肌纤维化是心肌梗死(MI)的主要病理特征。心肌成纤维细胞的激活和增殖是心肌纤维化发展过程中的关键因素。我们的研究深入探讨了Rap2a在心脏功能以及心肌纤维化中所起的作用,同时还探究了其对心脏成纤维细胞(CFs)增殖、迁移和表型转化的影响。对GEO数据库的检查显示,与正常小鼠相比,MI小鼠心肌组织中Rap2a的表达显著增加。Rap2a缺陷可减轻小鼠的MI,并抑制CFs的表型转变、增殖和迁移。Rap2a的缺失减轻了小鼠的MI。此外,它抑制CFs的生长,限制其移动,并防止它们发生表型转化。Rap2a可与心肌成纤维细胞中的TNIK结合并增强TNIK表达;Merlin/YAP信号通路被评估为TNIK的下游靶点,以进一步阐明Rap2a影响心肌细胞的调控机制。总之,本研究提供了证据表明,Rap2a通过TNIK/Merlin/YAP途径介导CFs的肌成纤维细胞转化、增殖和迁移,从而促进心肌纤维化,进而加重心肌梗死症状。