Reduced BMPR2 expression induces GM-CSF translation and macrophage recruitment in humans and mice to exacerbate pulmonary hypertension

Author:

Sawada Hirofumi111,Saito Toshie111,Nickel Nils P.111,Alastalo Tero-Pekka111,Glotzbach Jason P.11,Chan Roshelle11,Haghighat Leila11,Fuchs Gabriele11,Januszyk Michael11,Cao Aiqin111,Lai Ying-Ju11,Perez Vinicio de Jesus111,Kim Yu-Mee11,Wang Lingli111,Chen Pin-I111,Spiekerkoetter Edda111,Mitani Yoshihide2,Gurtner Geoffrey C.11,Sarnow Peter11,Rabinovitch Marlene111

Affiliation:

1. The Vera Moulton Wall Center for Pulmonary Vascular Disease, Department of Pediatrics, Department of Surgery, Department of Microbiology and Immunology, Department of Medicine, and Cardiovascular Institute, Stanford University School of Medicine, Stanford, CA 94305

2. Department of Pediatrics, Mie University Graduate School of Medicine, Mie 5148507, Japan

Abstract

Idiopathic pulmonary arterial hypertension (PAH [IPAH]) is an insidious and potentially fatal disease linked to a mutation or reduced expression of bone morphogenetic protein receptor 2 (BMPR2). Because intravascular inflammatory cells are recruited in IPAH pathogenesis, we hypothesized that reduced BMPR2 enhances production of the potent chemokine granulocyte macrophage colony-stimulating factor (GM-CSF) in response to an inflammatory perturbation. When human pulmonary artery (PA) endothelial cells deficient in BMPR2 were stimulated with tumor necrosis factor (TNF), a twofold increase in GM-CSF was observed and related to enhanced messenger RNA (mRNA) translation. The mechanism was associated with disruption of stress granule formation. Specifically, loss of BMPR2 induced prolonged phospho-p38 mitogen-activated protein kinase (MAPK) in response to TNF, and this increased GADD34–PP1 phosphatase activity, dephosphorylating eukaryotic translation initiation factor (eIF2α), and derepressing GM-CSF mRNA translation. Lungs from IPAH patients versus unused donor controls revealed heightened PA expression of GM-CSF co-distributing with increased TNF and expanded populations of hematopoietic and endothelial GM-CSF receptor α (GM-CSFRα)–positive cells. Moreover, a 3-wk infusion of GM-CSF in mice increased hypoxia-induced PAH, in association with increased perivascular macrophages and muscularized distal arteries, whereas blockade of GM-CSF repressed these features. Thus, reduced BMPR2 can subvert a stress granule response, heighten GM-CSF mRNA translation, increase inflammatory cell recruitment, and exacerbate PAH.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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