4.7 Article

Sodium tanshinone IIA sulfonate enhances the BMP9-BMPR2-Smad1/5/9 signaling pathway in rat pulmonary microvascular endothelial cells and human embryonic stem cell-derived endothelial cells

期刊

BIOCHEMICAL PHARMACOLOGY
卷 199, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.bcp.2022.114986

关键词

Pulmonary hypertension; Sodium tanshinone IIA sulfonate; PMVECs; BMPR2; BMP9; Smad1/5/9

资金

  1. National Natural Science Foundation of China [81970057, 82170065, 82170069, 82120108001]
  2. National Key Research and Development Program of China [2016YFC0903700, 2016YFC1304102, 2018YFC1311900]
  3. Changjiang Scholars and Innovative Research Team in University [IRT0961]
  4. Local Innovative and Research Teams Project of Guangdong Pearl River Talents Program [2017BT01S155]
  5. Guangdong Department of Science and Technology [2018A030313965, 2019A1515010615, 2019B030316028, 2019A050510046, 2021A1515010767]
  6. Indepen-dent Project of State Key Laboratory of Respiratory Disease [SKLRD-Z-202219]
  7. State Key Laboratory of Respiratory Disease [GHMJLRID-Z-202120]

向作者/读者索取更多资源

This study demonstrates that STS exerts anti-apoptotic effects in pulmonary endothelium and PMVECs by inducing the BMP9-BMPR2-Smad1/5/9 signaling transduction.
Background: Recent studies have demonstrated the beneficial effects of STS in treating pulmonary hypertension by inhibiting the pulmonary vascular remodeling and suppressing the abnormally elevated proliferation and migration of PASMCs. However, the roles of STS on pulmonary vascular endothelium remain largely known.& nbsp;Methods: In this study, we investigated the effects and mechanisms of STS on pulmonary vascular endothelial dysfunction by using a chronic hypoxia-induced pulmonary hypertension (HPH) rat model, as well as in pri-marily cultured rat PMVECs and human ESC-ECs cell models.& nbsp;Results: Firstly, a 21-day treatment of STS significantly prevents the disease development of HPH by normalizing the right ventricular systolic pressure and right ventricular hypertrophy, improving the cardiac output. Then, STS treatment markedly inhibits the hypoxia-induced medial wall thickening of the distal intrapulmonary arteries. Notably, STS significantly inhibits the hypoxia-induced apoptosis in both the pulmonary endothelium of HPH rats and primarily cultured PMVECs, through the stabilization of BMPR2 protein and protection of the diminished BMP9-BMPR2-Smad1/5/9 signaling pathway. In mechanism, STS treatment retrieves the hypoxic down-regulation of BMPR2 by stabilizing the BMPR2 protein, inhibiting the BMPR2 protein degradation via lysosome system, and promoting the plasma membrane localization of BMPR2, all of which together reinforcing the BMP9-induced signaling transduction in both PMVECs and human ESC-ECs. However, these effects are absent in hESC-ECs expressing heterozygous dysfunctional BMPR2 protein (BMPR2(+/R899X)).& nbsp;Conclusion: STS may exert anti-apoptotic roles, at least partially, via induction of the BMP9-BMPR2-Smad1/5/9 signaling transduction in pulmonary endothelium and PMVECs.

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