4.7 Article

Critical role of PAFR/YAP1 positive feedback loop in cardiac fibrosis

期刊

ACTA PHARMACOLOGICA SINICA
卷 43, 期 11, 页码 2862-2872

出版社

NATURE PUBL GROUP
DOI: 10.1038/s41401-022-00903-9

关键词

cardiac fibrosis; cardiac fibroblasts; PAF; PAFR; Hippo; YAP1

资金

  1. National Natural Science Foundation of China [81900225, 82170299, 81870211, 81872863]
  2. HMU Marshal Initiative Funding [HMUMIF-21023]
  3. Major Scientific Fund Project of Heilongjiang Province [ZD2019H001]
  4. CAMS Innovation Fund for Medical Sciences (CIFMS) [2019-I2M-5-078]

向作者/读者索取更多资源

Abnormal activation of cardiac fibroblasts is the main cause of cardiac fibrosis. This study reveals the important roles of platelet-activating factor (PAF) and the Hippo pathway in cardiac fibrosis. PAF induces fibrosis through activation of the effector YAP1 and promotes its nuclear translocation via PAFR interaction. Furthermore, YAP1 promotes the expression of PAFR. Inhibiting PAFR or YAP1 can impede cardiac fibrosis and improve cardiac function. These findings suggest the potential of PAFR/YAP1 as therapeutic targets for cardiac fibrosis.
Aberrant activation of cardiac fibroblasts is the main cause and character of cardiac fibrosis, and inhibition of cardiac fibrosis becomes a promising treatment for cardiac diseases. Platelet-activating factor (PAF) and Hippo pathway is recently recognized as key signaling mechanisms in cardiovascular diseases. In this study we explored the potential roles of PAF and Hippo signaling pathway in cardiac fibrosis. Myocardial infarction (MI) was induced in mice by left anterior descending artery ligation. After 28 days, the mice were sacrificed, and the hearts were collected for analyses. We showed that PAF receptor (PAFR) and yes-associated protein 1 (YAP1, a key effector in the Hippo pathway) were significantly increased in the heart of MI mice. Increased expression of PAFR and YAP1 was also observed in angiotensin II (Ang II)-treated mouse cardiac fibroblasts. In mouse cardiac fibroblasts, forced expression of YAP1 increased cell viability, resulted in collagen deposition and promoted fibroblast-myofibroblast transition. We showed that PAF induced fibrogenesis through activation of YAP1 and promoted its nuclear translocation via interacting with PAFR, while YAP1 promoted the expression of PAFR by binding to and activating transcription factor TEAD1. More importantly, silencing PAFR or YAP1 by shRNA, or using transgenic mice to induce the conditional deletion of YAP1 in cardiac fibroblasts, impeded cardiac fibrosis and improved cardiac function in MI mice. Taken together, this study elucidates the role and mechanisms of PAFR/YAP1 positive feedback loop in cardiac fibrosis, suggesting a potential role of this pathway as novel therapeutic targets in cardiac fibrosis.

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