Literature DB >> 28348038

Bone Morphogenetic Proteins in Vascular Homeostasis and Disease.

Marie-José Goumans1, An Zwijsen2,3, Peter Ten Dijke1,4, Sabine Bailly5,6,7.   

Abstract

It is well established that control of vascular morphogenesis and homeostasis is regulated by vascular endothelial growth factor (VEGF), fibroblast growth factor (FGF), Delta-like 4 (Dll4), angiopoietin, and ephrin signaling. It has become clear that signaling by bone morphogenetic proteins (BMPs), which have a long history of studies in bone and early heart development, are also essential for regulating vascular function. Indeed, mutations that cause deregulated BMP signaling are linked to two human vascular diseases, hereditary hemorrhagic telangiectasia and pulmonary arterial hypertension. These observations are corroborated by data obtained with vascular cells in cell culture and in mouse models. BMPs are required for normal endothelial cell differentiation and for venous/arterial and lymphatic specification. In adult life, BMP signaling orchestrates neo-angiogenesis as well as vascular inflammation, remodeling, and calcification responses to shear and oxidative stress. This review emphasizes the pivotal role of BMPs in the vascular system, based on studies of mouse models and human vascular disorders.
Copyright © 2018 Cold Spring Harbor Laboratory Press; all rights reserved.

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Year:  2018        PMID: 28348038     DOI: 10.1101/cshperspect.a031989

Source DB:  PubMed          Journal:  Cold Spring Harb Perspect Biol        ISSN: 1943-0264            Impact factor:   10.005


  47 in total

Review 1.  Specificity, versatility, and control of TGF-β family signaling.

Authors:  Rik Derynck; Erine H Budi
Journal:  Sci Signal       Date:  2019-02-26       Impact factor: 8.192

2.  Shaping Waves of Bone Morphogenetic Protein Inhibition During Vascular Growth.

Authors:  Pierre J Guihard; Yina Guo; Xiuju Wu; Lily Zhang; Jiayi Yao; Medet Jumabay; Yucheng Yao; Alan Garfinkel; Kristina I Boström
Journal:  Circ Res       Date:  2020-08-28       Impact factor: 17.367

Review 3.  Deregulation of Drosha in the pathogenesis of hereditary hemorrhagic telangiectasia.

Authors:  Akiko Hata; Giorgio Lagna
Journal:  Curr Opin Hematol       Date:  2019-05       Impact factor: 3.284

4.  Structural Adaptation in Its Orphan Domain Engenders Betaglycan with an Alternate Mode of Growth Factor Binding Relative to Endoglin.

Authors:  Sun Kyung Kim; Matthew J Whitley; Troy C Krzysiak; Cynthia S Hinck; Alexander B Taylor; Christian Zwieb; Chang-Hyeock Byeon; Xiaohong Zhou; Valentín Mendoza; Fernando López-Casillas; William Furey; Andrew P Hinck
Journal:  Structure       Date:  2019-07-18       Impact factor: 5.006

5.  Correcting Smad1/5/8, mTOR, and VEGFR2 treats pathology in hereditary hemorrhagic telangiectasia models.

Authors:  Santiago Ruiz; Haitian Zhao; Pallavi Chandakkar; Julien Papoin; Hyunwoo Choi; Aya Nomura-Kitabayashi; Radhika Patel; Matthew Gillen; Li Diao; Prodyot K Chatterjee; Mingzhu He; Yousef Al-Abed; Ping Wang; Christine N Metz; S Paul Oh; Lionel Blanc; Fabien Campagne; Philippe Marambaud
Journal:  J Clin Invest       Date:  2020-02-03       Impact factor: 14.808

6.  SMAD4 Prevents Flow Induced Arteriovenous Malformations by Inhibiting Casein Kinase 2.

Authors:  Roxana Ola; Sandrine H Künzel; Feng Zhang; Gael Genet; Raja Chakraborty; Laurence Pibouin-Fragner; Kathleen Martin; William Sessa; Alexandre Dubrac; Anne Eichmann
Journal:  Circulation       Date:  2018-11-20       Impact factor: 29.690

7.  Ancestry and genetic associations with bronchopulmonary dysplasia in preterm infants.

Authors:  Dara G Torgerson; Philip L Ballard; Roberta L Keller; Sam S Oh; Scott Huntsman; Donglei Hu; Celeste Eng; Esteban G Burchard; Roberta A Ballard
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2018-08-16       Impact factor: 5.464

8.  Inactivating mutations in Drosha mediate vascular abnormalities similar to hereditary hemorrhagic telangiectasia.

Authors:  Xuan Jiang; Whitney L Wooderchak-Donahue; Jamie McDonald; Prajakta Ghatpande; Mai Baalbaki; Melissa Sandoval; Daniel Hart; Hilary Clay; Shaun Coughlin; Giorgio Lagna; Pinar Bayrak-Toydemir; Akiko Hata
Journal:  Sci Signal       Date:  2018-01-16       Impact factor: 8.192

9.  Tacrolimus rescues the signaling and gene expression signature of endothelial ALK1 loss-of-function and improves HHT vascular pathology.

Authors:  Santiago Ruiz; Pallavi Chandakkar; Haitian Zhao; Julien Papoin; Prodyot K Chatterjee; Erica Christen; Christine N Metz; Lionel Blanc; Fabien Campagne; Philippe Marambaud
Journal:  Hum Mol Genet       Date:  2017-12-15       Impact factor: 6.150

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

Authors:  Christian Hiepen; Jerome Jatzlau; Susanne Hildebrandt; Branka Kampfrath; Melis Goktas; Arunima Murgai; Jose Luis Cuellar Camacho; Rainer Haag; Clemens Ruppert; Gerhard Sengle; Elisabetta Ada Cavalcanti-Adam; Kerstin G Blank; Petra Knaus
Journal:  PLoS Biol       Date:  2019-12-11       Impact factor: 8.029

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