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Published online
doi:10.1083/jcb.200806049
The Journal of Cell Biology, Vol. 184, No. 1, 83-99
The Rockefeller University Press, 0021-9525 $30.00
© de Jesus Perez et al.
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Article

Bone morphogenetic protein 2 induces pulmonary angiogenesis via Wnt–β-catenin and Wnt–RhoA–Rac1 pathways



Vinicio A. de Jesus Perez1, Tero-Pekka Alastalo3, Jenny C. Wu1, Jeffrey D. Axelrod2, John P. Cooke1, Manuel Amieva3, and Marlene Rabinovitch3

1 Department of Medicine, 2 Department of Pathology, and 3 Department of Pediatrics, Stanford University, Stanford, CA 94305

Correspondence to Marlene Rabinovitch: marlener{at}stanford.edu

Mutations in bone morphogenetic protein (BMP) receptor II (BMPRII) are associated with pulmonary artery endothelial cell (PAEC) apoptosis and the loss of small vessels seen in idiopathic pulmonary arterial hypertension. Given the low penetrance of BMPRII mutations, abnormalities in other converging signaling pathways may be necessary for disease development. We hypothesized that BMPRII supports normal PAEC function by recruiting Wingless (Wnt) signaling pathways to promote proliferation, survival, and motility. In this study, we report that BMP-2, via BMPRII-mediated inhibition of GSK3-β, induces β-catenin (β-C) accumulation and transcriptional activity necessary for PAEC survival and proliferation. At the same time, BMP-2 mediates phosphorylated Smad1 (pSmad1) or, with loss of BMPRII, pSmad3-dependent recruitment of Disheveled (Dvl) to promote RhoA–Rac1 signaling necessary for motility. Finally, using an angiogenesis assay in severe combined immunodeficient mice, we demonstrate that both β-C– and Dvl-mediated RhoA–Rac1 activation are necessary for vascular growth in vivo. These findings suggest that the recruitment of both canonical and noncanonical Wnt pathways is required in BMP-2–mediated angiogenesis.


Abbreviations used in this paper: ActR, activin receptor; β-C, β-catenin; BMP, bone morphogenetic protein; BMPR, BMP receptor; Dvl, Disheveled; EC, endothelial cell; ERK, extracellular receptor-dependent kinase; hPAEC, human PAEC; IPAH, idiopathic PAH; LEF, lymphoid enhancer binding factor; LIMK, LIM domain kinase; NLK, NEMO-like kinase; PAEC, pulmonary artery EC; PAH, pulmonary arterial hypertension; pERK, phosphorylated ERK; pSmad, phosphorylated Smad; SCID, severe combined immunodeficient; SMC, smooth muscle cell; TCF, T cell–specific transcription factor; Wnt, Wingless; WT, wild type.

© 2009 de Jesus Perez et al. This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.jcb.org/misc/terms.shtml). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 3.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/3.0/).

The Rockefeller University Press


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