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April 10, 2008Journal of Clinical Investigation370 citationsOpen Access

An antiproliferative BMP-2/PPARγ/apoE axis in human and murine SMCs and its role in pulmonary hypertension

GHGeorg HansmannPediatric CardiologyVPVinicio A. de Jesús PérezVascular MedicineTATero‐Pekka AlastaloQuest Diagnostics (United States)

Structured PICO

Does the BMP-2/PPARγ/apoE axis regulate smooth muscle cell proliferation and protect against pulmonary arterial hypertension?

P
Population
Human and murine pulmonary artery smooth muscle cells (PASMCs), including PAH patient-derived BMP-RII mutant PASMCs, and genetically modified mice (PPARγ- and apoE-deficient mice, and mice with targeted deletion of PPARγ in SMCs)
I
Intervention
BMP-2 signaling, PPARγ agonists, and targeted deletion of PPARγ in SMCs
C
Comparator
Untreated cells or wild-type mice
O
Outcome
SMC proliferation and development of pulmonary arterial hypertension (RV systolic pressure, RV hypertrophy, muscularization of distal pulmonary arteries)surrogate

The study identifies a protective BMP-2/PPARγ/apoE axis against pulmonary arterial hypertension, suggesting that PPARγ agonists could be a potential therapeutic strategy.

Abstract

Loss-of-function mutations in bone morphogenetic protein receptor II (BMP-RII) are linked to pulmonary arterial hypertension (PAH); the ligand for BMP-RII, BMP-2, is a negative regulator of SMC growth. Here, we report an interplay between PPARgamma and its transcriptional target apoE downstream of BMP-2 signaling. BMP-2/BMP-RII signaling prevented PDGF-BB-induced proliferation of human and murine pulmonary artery SMCs (PASMCs) by decreasing nuclear phospho-ERK and inducing DNA binding of PPARgamma that is independent of Smad1/5/8 phosphorylation. Both BMP-2 and a PPARgamma agonist stimulated production and secretion of apoE by SMCs. Using a variety of methods, including short hairpin RNAi in human PASMCs, PAH patient-derived BMP-RII mutant PASMCs, a PPARgamma antagonist, and PASMCs isolated from PPARgamma- and apoE-deficient mice, we demonstrated that the antiproliferative effect of BMP-2 was BMP-RII, PPARgamma, and apoE dependent. Furthermore, we created mice with targeted deletion of PPARgamma in SMCs and showed that they spontaneously developed PAH, as indicated by elevated RV systolic pressure, RV hypertrophy, and increased muscularization of the distal pulmonary arteries. Thus, PPARgamma-mediated events could protect against PAH, and PPARgamma agonists may reverse PAH in patients with or without BMP-RII dysfunction.

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Cite This Study

Hansmann et al. (2008) studied this question.

synapsesocial.com/papers/69d8bd1ed2f7327e70ae4171https://doi.org/10.1172/jci32503
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