Bone Morphogenetic Protein-Modulator BMPER Regulates Endothelial Barrier Function

被引:0
作者
Thomas Helbing
Gwendoline Wiltgen
Alexandra Hornstein
Elena Z. Brauers
Linus Arnold
Adrian Bauer
Jennifer S. Esser
Philipp Diehl
Sebastian Grundmann
Katrin Fink
Cam Patterson
Christoph Bode
Martin Moser
机构
[1] Heart Center Freiburg University,Department of Cardiology and Angiology
[2] University of Freiburg,Faculty of Medicine
[3] University Hospital of Freiburg,Department of Emergency Medicine
[4] University of North Carolina at Chapel Hill,McAllister Heart Institute
[5] New York-Presbyterian Hospital,undefined
来源
Inflammation | 2017年 / 40卷
关键词
endothelial barrier function; BMPER; BMP4; Smad; VE-cadherin;
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学科分类号
摘要
The endothelium serves as a selective barrier and controls the exchange of nutrients, hormones, and leukocytes between blood and tissues. Molecular mechanisms contributing to the pathogenesis of endothelial barrier dysfunction remain incompletely understood. Accumulating evidence implicates bone morphogenetic protein (BMP)-modulator BMPER as a key regulator in endothelial biology. Herein, we analyze the impact of BMPER in the control of endothelial barrier function. To assess the role of BMPER in vascular barrier function in mice, we measured the leakage of Evans blue dye from blood into interstitial lung tissue. BMPER+/− mice exhibited a significantly higher degree of vascular leak compared with wild-type siblings. In accordance with our in vivo observation, siRNA-based BMPER knockdown in human umbilical endothelial cells increased endothelial permeability measured by FITC-dextran passage in transwell assays. Mechanistically, BMPER knockdown reduced the expression of VE-cadherin, a pivotal component of endothelial adherens junctions. Conversely, recombinant human BMPER protein upregulated VE-cadherin protein levels and improved endothelial barrier function in transwell assays. The effects of BMPER knockdown on VE-cadherin expression and endothelial permeability were induced by enhanced BMP activity. Supporting this notion, activation of BMP4-Smad-Id1 signaling reduced VE-cadherin levels and impaired endothelial barrier function in vitro. In vivo, Evans blue dye accumulation was higher in the lungs of BMP4-treated C57BL/6 mice compared to controls indicating that BMP4 increased vascular permeability. High levels of BMPER antagonized BMP4-Smad5-Id1 signaling and prevented BMP4-induced downregulation of VE-cadherin and endothelial leakage, suggesting that BMPER exerts anti-BMP effects and restores endothelial barrier function. Taken together, this data demonstrates that BMPER-modulated BMP pathway activity regulates VE-cadherin expression and vascular barrier function.
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页码:442 / 453
页数:11
相关论文
共 55 条
[1]  
Mehta D(2006)Signaling mechanisms regulating endothelial permeability Physiological Reviews 86 279-367
[2]  
Malik AB(2008)Regulation of endothelial junctional permeability Annals of the New York Academy of Sciences 1123 134-145
[3]  
Vandenbroucke E(2010)Regulation of endothelial permeability via paracellular and transcellular transport pathways Annual Review of Physiology 72 463-493
[4]  
Komarova Y(2008)VE-cadherin: the major endothelial adhesion molecule controlling cellular junctions and blood vessel formation Arteriosclerosis, Thrombosis, and Vascular Biology 28 223-232
[5]  
Malik AB(2013)VE-cadherin and endothelial adherens junctions: active guardians of vascular integrity Developmental Cell 26 441-454
[6]  
Vestweber D(2009)Cell adhesion dynamics at endothelial junctions: VE-cadherin as a major player Trends in Cell Biology 19 8-15
[7]  
Giannotta M(2013)The role of VE-cadherin in vascular morphogenesis and permeability control Progress in Molecular Biology and Translational Science 116 119-144
[8]  
Trani M(2016)BMP signaling in vascular biology and dysfunction Cytokine and Growth Factor Reviews 27 65-79
[9]  
Dejana E(2012)BMP signaling in vascular diseases FEBS Letters 586 1993-2002
[10]  
Vestweber D(2014)The role of BMPs in endothelial cell function and dysfunction Trends in Endocrinology and Metabolism 25 472-480