FGF21 alleviates pulmonary hypertension by inhibiting mTORC1/EIF4EBP1 pathway via H19

J Cell Mol Med. 2022 May;26(10):3005-3021. doi: 10.1111/jcmm.17318. Epub 2022 Apr 19.

Abstract

Long non-coding RNAs (lncRNAs) play a significant role in pulmonary hypertension (PH). Our preliminary data showed that hypoxia-induced PH is attenuated by fibroblast growth factor 21 (FGF21) administration. Therefore, we further investigated the regulatory role of long non-coding RNAs in PH treated with FGF21. RNA sequencing analysis and real-time PCR identified a significantly up-regulation of the H19 after FGF21 administration. Moreover, gain- and loss-of-function assays demonstrated that FGF21 suppressed hypoxia-induced proliferation of pulmonary artery smooth muscle cells partially through upregulation of H19. In addition, FGF21 deficiency markedly exacerbated hypoxia-induced increases of pulmonary artery pressure and pulmonary vascular remodelling. In addition, AAV-mediated H19 overexpression reversed the malignant phenotype of FGF21 knockout mice under hypoxia expose. Further investigation uncovered that H19 also acted as an orchestra conductor that inhibited the function of mechanistic target of rapamycin complex 1 (mTORC1) by disrupting the interaction of mTORC1 with eukaryotic translation initiation factor 4E-binding protein 1 (EIF4EBP1). Our work highlights the important role of H19 in PH treated with FGF21 and suggests a mechanism involving mTORC1/EIF4EBP1 inhibition, which may provide a fundamental for clinical application of FGF21 in PH.

Keywords: fibroblast growth factor 21; long non-coding RNAs; molecular mechanism; pulmonary hypertension; pulmonary vascular diseases.

MeSH terms

  • Adaptor Proteins, Signal Transducing* / metabolism
  • Animals
  • Cell Cycle Proteins* / metabolism
  • Cell Proliferation
  • Fibroblast Growth Factors* / metabolism
  • Hypertension, Pulmonary* / drug therapy
  • Hypertension, Pulmonary* / metabolism
  • Hypoxia / metabolism
  • Mechanistic Target of Rapamycin Complex 1* / metabolism
  • Mice
  • Myocytes, Smooth Muscle / metabolism
  • Pulmonary Artery / pathology
  • RNA, Long Noncoding* / metabolism

Substances

  • Adaptor Proteins, Signal Transducing
  • Cell Cycle Proteins
  • Eif4ebp1 protein, mouse
  • H19 long non-coding RNA
  • RNA, Long Noncoding
  • fibroblast growth factor 21
  • Fibroblast Growth Factors
  • Mechanistic Target of Rapamycin Complex 1