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Inhibition of Bone Morphogenetic Protein Signal Transduction Prevents the Medial Vascular Calcification Associated with Matrix Gla Protein Deficiency

OBJECTIVE: Matrix Gla protein (MGP) is reported to inhibit bone morphogenetic protein (BMP) signal transduction. MGP deficiency is associated with medial calcification of the arterial wall, in a process that involves both osteogenic transdifferentiation of vascular smooth muscle cells (VSMCs) and me...

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Autores principales: Malhotra, Rajeev, Burke, Megan F., Martyn, Trejeeve, Shakartzi, Hannah R., Thayer, Timothy E., O’Rourke, Caitlin, Li, Pingcheng, Derwall, Matthias, Spagnolli, Ester, Kolodziej, Starsha A., Hoeft, Konrad, Mayeur, Claire, Jiramongkolchai, Pawina, Kumar, Ravindra, Buys, Emmanuel S., Yu, Paul B., Bloch, Kenneth D., Bloch, Donald B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4300181/
https://www.ncbi.nlm.nih.gov/pubmed/25603410
http://dx.doi.org/10.1371/journal.pone.0117098
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author Malhotra, Rajeev
Burke, Megan F.
Martyn, Trejeeve
Shakartzi, Hannah R.
Thayer, Timothy E.
O’Rourke, Caitlin
Li, Pingcheng
Derwall, Matthias
Spagnolli, Ester
Kolodziej, Starsha A.
Hoeft, Konrad
Mayeur, Claire
Jiramongkolchai, Pawina
Kumar, Ravindra
Buys, Emmanuel S.
Yu, Paul B.
Bloch, Kenneth D.
Bloch, Donald B.
author_facet Malhotra, Rajeev
Burke, Megan F.
Martyn, Trejeeve
Shakartzi, Hannah R.
Thayer, Timothy E.
O’Rourke, Caitlin
Li, Pingcheng
Derwall, Matthias
Spagnolli, Ester
Kolodziej, Starsha A.
Hoeft, Konrad
Mayeur, Claire
Jiramongkolchai, Pawina
Kumar, Ravindra
Buys, Emmanuel S.
Yu, Paul B.
Bloch, Kenneth D.
Bloch, Donald B.
author_sort Malhotra, Rajeev
collection PubMed
description OBJECTIVE: Matrix Gla protein (MGP) is reported to inhibit bone morphogenetic protein (BMP) signal transduction. MGP deficiency is associated with medial calcification of the arterial wall, in a process that involves both osteogenic transdifferentiation of vascular smooth muscle cells (VSMCs) and mesenchymal transition of endothelial cells (EndMT). In this study, we investigated the contribution of BMP signal transduction to the medial calcification that develops in MGP-deficient mice. APPROACH AND RESULTS: MGP-deficient mice (MGP(-/-)) were treated with one of two BMP signaling inhibitors, LDN-193189 or ALK3-Fc, beginning one day after birth. Aortic calcification was assessed in 28-day-old mice by measuring the uptake of a fluorescent bisphosphonate probe and by staining tissue sections with Alizarin red. Aortic calcification was 80% less in MGP(-/-) mice treated with LDN-193189 or ALK3-Fc compared with vehicle-treated control animals (P<0.001 for both). LDN-193189-treated MGP(-/-) mice survived longer than vehicle-treated MGP(-/-) mice. Levels of phosphorylated Smad1/5 and Id1 mRNA (markers of BMP signaling) did not differ in the aortas from MGP(-/-) and wild-type mice. Markers of EndMT and osteogenesis were increased in MGP(-/-) aortas, an effect that was prevented by LDN-193189. Calcification of isolated VSMCs was also inhibited by LDN-193189. CONCLUSIONS: Inhibition of BMP signaling leads to reduced vascular calcification and improved survival in MGP(-/-) mice. The EndMT and osteogenic transdifferentiation associated with MGP deficiency is dependent upon BMP signaling. These results suggest that BMP signal transduction has critical roles in the development of vascular calcification in MGP-deficient mice.
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spelling pubmed-43001812015-01-30 Inhibition of Bone Morphogenetic Protein Signal Transduction Prevents the Medial Vascular Calcification Associated with Matrix Gla Protein Deficiency Malhotra, Rajeev Burke, Megan F. Martyn, Trejeeve Shakartzi, Hannah R. Thayer, Timothy E. O’Rourke, Caitlin Li, Pingcheng Derwall, Matthias Spagnolli, Ester Kolodziej, Starsha A. Hoeft, Konrad Mayeur, Claire Jiramongkolchai, Pawina Kumar, Ravindra Buys, Emmanuel S. Yu, Paul B. Bloch, Kenneth D. Bloch, Donald B. PLoS One Research Article OBJECTIVE: Matrix Gla protein (MGP) is reported to inhibit bone morphogenetic protein (BMP) signal transduction. MGP deficiency is associated with medial calcification of the arterial wall, in a process that involves both osteogenic transdifferentiation of vascular smooth muscle cells (VSMCs) and mesenchymal transition of endothelial cells (EndMT). In this study, we investigated the contribution of BMP signal transduction to the medial calcification that develops in MGP-deficient mice. APPROACH AND RESULTS: MGP-deficient mice (MGP(-/-)) were treated with one of two BMP signaling inhibitors, LDN-193189 or ALK3-Fc, beginning one day after birth. Aortic calcification was assessed in 28-day-old mice by measuring the uptake of a fluorescent bisphosphonate probe and by staining tissue sections with Alizarin red. Aortic calcification was 80% less in MGP(-/-) mice treated with LDN-193189 or ALK3-Fc compared with vehicle-treated control animals (P<0.001 for both). LDN-193189-treated MGP(-/-) mice survived longer than vehicle-treated MGP(-/-) mice. Levels of phosphorylated Smad1/5 and Id1 mRNA (markers of BMP signaling) did not differ in the aortas from MGP(-/-) and wild-type mice. Markers of EndMT and osteogenesis were increased in MGP(-/-) aortas, an effect that was prevented by LDN-193189. Calcification of isolated VSMCs was also inhibited by LDN-193189. CONCLUSIONS: Inhibition of BMP signaling leads to reduced vascular calcification and improved survival in MGP(-/-) mice. The EndMT and osteogenic transdifferentiation associated with MGP deficiency is dependent upon BMP signaling. These results suggest that BMP signal transduction has critical roles in the development of vascular calcification in MGP-deficient mice. Public Library of Science 2015-01-20 /pmc/articles/PMC4300181/ /pubmed/25603410 http://dx.doi.org/10.1371/journal.pone.0117098 Text en © 2015 Malhotra et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Malhotra, Rajeev
Burke, Megan F.
Martyn, Trejeeve
Shakartzi, Hannah R.
Thayer, Timothy E.
O’Rourke, Caitlin
Li, Pingcheng
Derwall, Matthias
Spagnolli, Ester
Kolodziej, Starsha A.
Hoeft, Konrad
Mayeur, Claire
Jiramongkolchai, Pawina
Kumar, Ravindra
Buys, Emmanuel S.
Yu, Paul B.
Bloch, Kenneth D.
Bloch, Donald B.
Inhibition of Bone Morphogenetic Protein Signal Transduction Prevents the Medial Vascular Calcification Associated with Matrix Gla Protein Deficiency
title Inhibition of Bone Morphogenetic Protein Signal Transduction Prevents the Medial Vascular Calcification Associated with Matrix Gla Protein Deficiency
title_full Inhibition of Bone Morphogenetic Protein Signal Transduction Prevents the Medial Vascular Calcification Associated with Matrix Gla Protein Deficiency
title_fullStr Inhibition of Bone Morphogenetic Protein Signal Transduction Prevents the Medial Vascular Calcification Associated with Matrix Gla Protein Deficiency
title_full_unstemmed Inhibition of Bone Morphogenetic Protein Signal Transduction Prevents the Medial Vascular Calcification Associated with Matrix Gla Protein Deficiency
title_short Inhibition of Bone Morphogenetic Protein Signal Transduction Prevents the Medial Vascular Calcification Associated with Matrix Gla Protein Deficiency
title_sort inhibition of bone morphogenetic protein signal transduction prevents the medial vascular calcification associated with matrix gla protein deficiency
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4300181/
https://www.ncbi.nlm.nih.gov/pubmed/25603410
http://dx.doi.org/10.1371/journal.pone.0117098
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