4.7 Article

HIF-2 alpha-mediated induction of pulmonary thrombospondin-1 contributes to hypoxia-driven vascular remodelling and vasoconstriction

期刊

CARDIOVASCULAR RESEARCH
卷 109, 期 1, 页码 115-130

出版社

OXFORD UNIV PRESS
DOI: 10.1093/cvr/cvv243

关键词

Thrombospondin-1; Pulmonary artery; Fibroblasts; Smooth muscle cells; Endothelial cells; HIF-2 alpha; Hypoxia; Pulmonary arterial hypertension

资金

  1. Instituto de Salud Carlos III [PI13/01866, PIE 13/00041]
  2. Red Cardiovascular [RD12/0042/0065]
  3. NIH [P01 HL103455, R01 HL-108954, 1R01HL112914-01A1]
  4. American Heart Association grant [11BGIA7210001]
  5. Institute for Transfusion Medicine
  6. Hemophilia Center of Western Pennsylvania
  7. Heart, Lung, Blood and Vascular Medicine Institute of University of Pittsburgh
  8. NATIONAL HEART, LUNG, AND BLOOD INSTITUTE [P01HL103455, R01HL112914, R01HL108954] Funding Source: NIH RePORTER

向作者/读者索取更多资源

Aims Hypoxic conditions stimulate pulmonary vasoconstriction and vascular remodelling, both pathognomonic changes in pulmonary arterial hypertension (PAH). The secreted protein thrombospondin-1 (TSP1) is involved in the maintenance of lung homeostasis. New work identified a role for TSP1 in promoting PAH. Nonetheless, it is largely unknown how hypoxia regulates TSP1 in the lung and whether this contributes to pathological events during PAH. Methods and Results In cell and animal experiments, we found that hypoxia induces TSP1 in lungs, pulmonary artery smooth muscle cells and endothelial cells, and pulmonary fibroblasts. Using a murine model of constitutive hypoxia, gene silencing, and luciferase reporter experiments, we found that hypoxia-mediated induction of pulmonary TSP1 is a hypoxia-inducible factor (HIF)-2 alpha-dependent process. Additionally, hypoxic tsp1(-/-) pulmonary fibroblasts and pulmonary artery smooth muscle cell displayed decreased migration compared with wild-type (WT) cells. Furthermore, hypoxia-mediated induction of TSP1 destabilized endothelial cell-cell interactions. This provides genetic evidence that TSP1 contributes to vascular remodelling during PAH. Expanding cell data to whole tissues, we found that, under hypoxia, pulmonary arteries (PAs) from WT mice had significantly decreased sensitivity to acetylcholine (Ach)-stimulated endothelial-dependent vasodilation. In contrast, hypoxic tsp1(-/-) PAs retained sensitivity to Ach, mediated in part by TSP1 regulation of pulmonary Kv channels. Translating these preclinical studies, we find in the lungs from individuals with end-stage PAH, both TSP1 and HIF-2 alpha protein expression increased in the pulmonary vasculature compared with non-PAH controls. Conclusions These findings demonstrate that HIF-2 alpha is clearly implicated in the TSP1 pulmonary regulation and provide new insights on its contribution to PAH-driven vascular remodelling and vasoconstriction.

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