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Transforming growth factor β(1 )inhibits bone morphogenic protein (BMP)-2 and BMP-7 signaling via upregulation of Ski-related novel protein N (SnoN): possible mechanism for the failure of BMP therapy?

BACKGROUND: Bone morphogenic proteins (BMPs) play a key role in bone formation. Consequently, it was expected that topical application of recombinant human (rh)BMP-2 and rhBMP-7 would improve the healing of complex fractures. However, up to 36% of fracture patients do not respond to this therapy. Th...

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Autores principales: Ehnert, Sabrina, Zhao, Jian, Pscherer, Stefan, Freude, Thomas, Dooley, Steven, Kolk, Andreas, Stöckle, Ulrich, Nussler, Andreas Klaus, Hube, Robert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3523027/
https://www.ncbi.nlm.nih.gov/pubmed/22958403
http://dx.doi.org/10.1186/1741-7015-10-101
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author Ehnert, Sabrina
Zhao, Jian
Pscherer, Stefan
Freude, Thomas
Dooley, Steven
Kolk, Andreas
Stöckle, Ulrich
Nussler, Andreas Klaus
Hube, Robert
author_facet Ehnert, Sabrina
Zhao, Jian
Pscherer, Stefan
Freude, Thomas
Dooley, Steven
Kolk, Andreas
Stöckle, Ulrich
Nussler, Andreas Klaus
Hube, Robert
author_sort Ehnert, Sabrina
collection PubMed
description BACKGROUND: Bone morphogenic proteins (BMPs) play a key role in bone formation. Consequently, it was expected that topical application of recombinant human (rh)BMP-2 and rhBMP-7 would improve the healing of complex fractures. However, up to 36% of fracture patients do not respond to this therapy. There are hints that a systemic increase in transforming growth factor β(1 )(TGFβ(1)) interferes with beneficial BMP effects. Therefore, in the present work we investigated the influence of rhTGFβ(1 )on rhBMP signaling in primary human osteoblasts, with the aim of more specifically delineating the underlying regulatory mechanisms. METHODS: BMP signaling was detected by adenoviral Smad-binding-element-reporter assays. Gene expression was determined by reverse transcription polymerase chain reaction (RT-PCR) and confirmed at the protein level by western blot. Histone deacetylase (HDAC) activity was determined using a test kit. Data sets were compared by one-way analysis of variance. RESULTS: Our findings showed that Smad1/5/8-mediated rhBMP-2 and rhBMP-7 signaling is completely blocked by rhTGFβ(1). We then investigated expression levels of genes involved in BMP signaling and regulation (for example, Smad1/5/8, TGFβ receptors type I and II, noggin, sclerostin, BMP and activin receptor membrane bound inhibitor (BAMBI), v-ski sarcoma viral oncogene homolog (Ski), Ski-related novel protein N (SnoN) and Smad ubiquitination regulatory factors (Smurfs)) and confirmed the expression of regulated genes at the protein level. Smad7 and SnoN were significantly induced by rhTGFβ(1 )treatment while expression of Smad1, Smad6, TGFβRII and activin receptor-like kinase 1 (Alk1) was reduced. Elevated SnoN expression was accompanied by increased HDAC activity. Addition of an HDAC inhibitor, namely valproic acid, fully abolished the inhibitory effect of rhTGFβ(1 )on rhBMP-2 and rhBMP-7 signaling. CONCLUSIONS: rhTGFβ1 effectively blocks rhBMP signaling in osteoblasts. As possible mechanism, we postulate an induction of SnoN that increases HDAC activity and thereby reduces the expression of factors required for efficient BMP signaling. Thus, inhibition of HDAC activity may support bone healing during rhBMP therapy in patients with elevated TGFβ serum levels.
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spelling pubmed-35230272012-12-16 Transforming growth factor β(1 )inhibits bone morphogenic protein (BMP)-2 and BMP-7 signaling via upregulation of Ski-related novel protein N (SnoN): possible mechanism for the failure of BMP therapy? Ehnert, Sabrina Zhao, Jian Pscherer, Stefan Freude, Thomas Dooley, Steven Kolk, Andreas Stöckle, Ulrich Nussler, Andreas Klaus Hube, Robert BMC Med Research Article BACKGROUND: Bone morphogenic proteins (BMPs) play a key role in bone formation. Consequently, it was expected that topical application of recombinant human (rh)BMP-2 and rhBMP-7 would improve the healing of complex fractures. However, up to 36% of fracture patients do not respond to this therapy. There are hints that a systemic increase in transforming growth factor β(1 )(TGFβ(1)) interferes with beneficial BMP effects. Therefore, in the present work we investigated the influence of rhTGFβ(1 )on rhBMP signaling in primary human osteoblasts, with the aim of more specifically delineating the underlying regulatory mechanisms. METHODS: BMP signaling was detected by adenoviral Smad-binding-element-reporter assays. Gene expression was determined by reverse transcription polymerase chain reaction (RT-PCR) and confirmed at the protein level by western blot. Histone deacetylase (HDAC) activity was determined using a test kit. Data sets were compared by one-way analysis of variance. RESULTS: Our findings showed that Smad1/5/8-mediated rhBMP-2 and rhBMP-7 signaling is completely blocked by rhTGFβ(1). We then investigated expression levels of genes involved in BMP signaling and regulation (for example, Smad1/5/8, TGFβ receptors type I and II, noggin, sclerostin, BMP and activin receptor membrane bound inhibitor (BAMBI), v-ski sarcoma viral oncogene homolog (Ski), Ski-related novel protein N (SnoN) and Smad ubiquitination regulatory factors (Smurfs)) and confirmed the expression of regulated genes at the protein level. Smad7 and SnoN were significantly induced by rhTGFβ(1 )treatment while expression of Smad1, Smad6, TGFβRII and activin receptor-like kinase 1 (Alk1) was reduced. Elevated SnoN expression was accompanied by increased HDAC activity. Addition of an HDAC inhibitor, namely valproic acid, fully abolished the inhibitory effect of rhTGFβ(1 )on rhBMP-2 and rhBMP-7 signaling. CONCLUSIONS: rhTGFβ1 effectively blocks rhBMP signaling in osteoblasts. As possible mechanism, we postulate an induction of SnoN that increases HDAC activity and thereby reduces the expression of factors required for efficient BMP signaling. Thus, inhibition of HDAC activity may support bone healing during rhBMP therapy in patients with elevated TGFβ serum levels. BioMed Central 2012-09-07 /pmc/articles/PMC3523027/ /pubmed/22958403 http://dx.doi.org/10.1186/1741-7015-10-101 Text en Copyright ©2012 Ehnert et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ehnert, Sabrina
Zhao, Jian
Pscherer, Stefan
Freude, Thomas
Dooley, Steven
Kolk, Andreas
Stöckle, Ulrich
Nussler, Andreas Klaus
Hube, Robert
Transforming growth factor β(1 )inhibits bone morphogenic protein (BMP)-2 and BMP-7 signaling via upregulation of Ski-related novel protein N (SnoN): possible mechanism for the failure of BMP therapy?
title Transforming growth factor β(1 )inhibits bone morphogenic protein (BMP)-2 and BMP-7 signaling via upregulation of Ski-related novel protein N (SnoN): possible mechanism for the failure of BMP therapy?
title_full Transforming growth factor β(1 )inhibits bone morphogenic protein (BMP)-2 and BMP-7 signaling via upregulation of Ski-related novel protein N (SnoN): possible mechanism for the failure of BMP therapy?
title_fullStr Transforming growth factor β(1 )inhibits bone morphogenic protein (BMP)-2 and BMP-7 signaling via upregulation of Ski-related novel protein N (SnoN): possible mechanism for the failure of BMP therapy?
title_full_unstemmed Transforming growth factor β(1 )inhibits bone morphogenic protein (BMP)-2 and BMP-7 signaling via upregulation of Ski-related novel protein N (SnoN): possible mechanism for the failure of BMP therapy?
title_short Transforming growth factor β(1 )inhibits bone morphogenic protein (BMP)-2 and BMP-7 signaling via upregulation of Ski-related novel protein N (SnoN): possible mechanism for the failure of BMP therapy?
title_sort transforming growth factor β(1 )inhibits bone morphogenic protein (bmp)-2 and bmp-7 signaling via upregulation of ski-related novel protein n (snon): possible mechanism for the failure of bmp therapy?
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3523027/
https://www.ncbi.nlm.nih.gov/pubmed/22958403
http://dx.doi.org/10.1186/1741-7015-10-101
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