Literature DB >> 31826007

BMPR2 acts as a gatekeeper to protect endothelial cells from increased TGFβ responses and altered cell mechanics.

Christian Hiepen1, Jerome Jatzlau1,2, Susanne Hildebrandt1,2, Branka Kampfrath1, Melis Goktas3, Arunima Murgai1,2,4, Jose Luis Cuellar Camacho1, Rainer Haag1, Clemens Ruppert5, Gerhard Sengle6, Elisabetta Ada Cavalcanti-Adam7, Kerstin G Blank3, Petra Knaus1.   

Abstract

Balanced transforming growth factor-beta (TGFβ)/bone morphogenetic protein (BMP)-signaling is essential for tissue formation and homeostasis. While gain in TGFβ signaling is often found in diseases, the underlying cellular mechanisms remain poorly defined. Here we show that the receptor BMP type 2 (BMPR2) serves as a central gatekeeper of this balance, highlighted by its deregulation in diseases such as pulmonary arterial hypertension (PAH). We show that BMPR2 deficiency in endothelial cells (ECs) does not abolish pan-BMP-SMAD1/5 responses but instead favors the formation of mixed-heteromeric receptor complexes comprising BMPR1/TGFβR1/TGFβR2 that enable enhanced cellular responses toward TGFβ. These include canonical TGFβ-SMAD2/3 and lateral TGFβ-SMAD1/5 signaling as well as formation of mixed SMAD complexes. Moreover, BMPR2-deficient cells express genes indicative of altered biophysical properties, including up-regulation of extracellular matrix (ECM) proteins such as fibrillin-1 (FBN1) and of integrins. As such, we identified accumulation of ectopic FBN1 fibers remodeled with fibronectin (FN) in junctions of BMPR2-deficient ECs. Ectopic FBN1 deposits were also found in proximity to contractile intimal cells in pulmonary artery lesions of BMPR2-deficient heritable PAH (HPAH) patients. In BMPR2-deficient cells, we show that ectopic FBN1 is accompanied by active β1-integrin highly abundant in integrin-linked kinase (ILK) mechano-complexes at cell junctions. Increased integrin-dependent adhesion, spreading, and actomyosin-dependent contractility facilitates the retrieval of active TGFβ from its latent fibrillin-bound depots. We propose that loss of BMPR2 favors endothelial-to-mesenchymal transition (EndMT) allowing cells of myo-fibroblastic character to create a vicious feed-forward process leading to hyperactivated TGFβ signaling. In summary, our findings highlight a crucial role for BMPR2 as a gatekeeper of endothelial homeostasis protecting cells from increased TGFβ responses and integrin-mediated mechano-transduction.

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Year:  2019        PMID: 31826007      PMCID: PMC6927666          DOI: 10.1371/journal.pbio.3000557

Source DB:  PubMed          Journal:  PLoS Biol        ISSN: 1544-9173            Impact factor:   8.029


  132 in total

1.  Fibrillin assembly requires fibronectin.

Authors:  Laetitia Sabatier; Daliang Chen; Christine Fagotto-Kaufmann; Dirk Hubmacher; Marc D McKee; Douglas S Annis; Deane F Mosher; Dieter P Reinhardt
Journal:  Mol Biol Cell       Date:  2008-11-26       Impact factor: 4.138

2.  If cell mechanics can be described by elastic modulus: study of different models and probes used in indentation experiments.

Authors:  Nataliia Guz; Maxim Dokukin; Vivekanand Kalaparthi; Igor Sokolov
Journal:  Biophys J       Date:  2014-08-05       Impact factor: 4.033

3.  Bone morphogenetic protein receptor complexes on the surface of live cells: a new oligomerization mode for serine/threonine kinase receptors.

Authors:  L Gilboa; A Nohe; T Geissendörfer; W Sebald; Y I Henis; P Knaus
Journal:  Mol Biol Cell       Date:  2000-03       Impact factor: 4.138

4.  Altered growth responses of pulmonary artery smooth muscle cells from patients with primary pulmonary hypertension to transforming growth factor-beta(1) and bone morphogenetic proteins.

Authors:  N W Morrell; X Yang; P D Upton; K B Jourdan; N Morgan; K K Sheares; R C Trembath
Journal:  Circulation       Date:  2001-08-14       Impact factor: 29.690

Review 5.  Pulmonary vascular remodeling in pulmonary hypertension.

Authors:  Rubin M Tuder
Journal:  Cell Tissue Res       Date:  2016-12-26       Impact factor: 5.249

6.  Active collagen synthesis by pulmonary arteries in human primary pulmonary hypertension.

Authors:  M D Botney; M J Liptay; L R Kaiser; J D Cooper; W C Parks; R P Mecham
Journal:  Am J Pathol       Date:  1993-07       Impact factor: 4.307

7.  Interactions between growth factors and integrins: latent forms of transforming growth factor-beta are ligands for the integrin alphavbeta1.

Authors:  J S Munger; J G Harpel; F G Giancotti; D B Rifkin
Journal:  Mol Biol Cell       Date:  1998-09       Impact factor: 4.138

8.  Genetic ablation of the BMPR2 gene in pulmonary endothelium is sufficient to predispose to pulmonary arterial hypertension.

Authors:  Kwon-Ho Hong; Young Jae Lee; Eunji Lee; Sung Ok Park; Chul Han; Hideyuki Beppu; En Li; Mohan K Raizada; Kenneth D Bloch; S Paul Oh
Journal:  Circulation       Date:  2008-07-28       Impact factor: 29.690

9.  BioVenn - a web application for the comparison and visualization of biological lists using area-proportional Venn diagrams.

Authors:  Tim Hulsen; Jacob de Vlieg; Wynand Alkema
Journal:  BMC Genomics       Date:  2008-10-16       Impact factor: 3.969

Review 10.  Integrin-mediated mechanotransduction.

Authors:  Zhiqi Sun; Shengzhen S Guo; Reinhard Fässler
Journal:  J Cell Biol       Date:  2016-11-08       Impact factor: 10.539

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Authors:  Christian Michael Perez; Quentin Felty
Journal:  Microvasc Res       Date:  2022-02-07       Impact factor: 3.514

2.  Integrin-based adhesion compartmentalizes ALK3 of the BMPRII to control cell adhesion and migration.

Authors:  Olivier Destaing; Catherine Picart; Corinne Albiges-Rizo; Amaris Guevara-Garcia; Laure Fourel; Ingrid Bourrin-Reynard; Adria Sales; Christiane Oddou; Mylène Pezet; Olivier Rossier; Paul Machillot; Line Chaar; Anne-Pascale Bouin; Gregory Giannone
Journal:  J Cell Biol       Date:  2022-10-07       Impact factor: 8.077

3.  The context-dependent, combinatorial logic of BMP signaling.

Authors:  Heidi E Klumpe; Matthew A Langley; James M Linton; Christina J Su; Yaron E Antebi; Michael B Elowitz
Journal:  Cell Syst       Date:  2022-04-13       Impact factor: 11.091

Review 4.  The BMP Pathway in Blood Vessel and Lymphatic Vessel Biology.

Authors:  Ljuba C Ponomarev; Jakub Ksiazkiewicz; Michael W Staring; Aernout Luttun; An Zwijsen
Journal:  Int J Mol Sci       Date:  2021-06-14       Impact factor: 5.923

5.  A BMPR2/YY1 Signaling Axis Is Required for Human Cytomegalovirus Latency in Undifferentiated Myeloid Cells.

Authors:  Emma Poole; Maria Cristina Carlan da Silva; Chris Huang; Marianne Perera; Sarah Jackson; Ian J Groves; Mark Wills; Amer Rana; John Sinclair
Journal:  mBio       Date:  2021-06-01       Impact factor: 7.867

Review 6.  Endothelial-Mesenchymal Transition in Cardiovascular Disease.

Authors:  Zahra Alvandi; Joyce Bischoff
Journal:  Arterioscler Thromb Vasc Biol       Date:  2021-07-01       Impact factor: 10.514

Review 7.  Natural Autoantibodies in Chronic Pulmonary Diseases.

Authors:  Kiyoharu Fukushima; Kazuyuki Tsujino; Shinji Futami; Hiroshi Kida
Journal:  Int J Mol Sci       Date:  2020-02-08       Impact factor: 5.923

Review 8.  It Takes Two to Tango: Endothelial TGFβ/BMP Signaling Crosstalk with Mechanobiology.

Authors:  Christian Hiepen; Paul-Lennard Mendez; Petra Knaus
Journal:  Cells       Date:  2020-08-26       Impact factor: 6.600

Review 9.  Endothelial Basement Membrane Components and Their Products, Matrikines: Active Drivers of Pulmonary Hypertension?

Authors:  Ayse Ceren Mutgan; Katharina Jandl; Grazyna Kwapiszewska
Journal:  Cells       Date:  2020-09-03       Impact factor: 6.600

10.  Exacerbated inflammatory signaling underlies aberrant response to BMP9 in pulmonary arterial hypertension lung endothelial cells.

Authors:  Robert Szulcek; Gonzalo Sanchez-Duffhues; Nina Rol; Xiaoke Pan; Roula Tsonaka; Chris Dickhoff; Lai Ming Yung; Xue D Manz; Kondababu Kurakula; Szymon M Kiełbasa; Hailiang Mei; Wim Timens; Paul B Yu; Harm-Jan Bogaard; Marie-José Goumans
Journal:  Angiogenesis       Date:  2020-08-19       Impact factor: 9.596

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