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SERPINB2 is a novel TGFβ-responsive lineage fate determinant of human bone marrow stromal cells

TGF-β1, a multifunctional regulator of cell growth and differentiation, is the most abundant bone matrix growth factor. During differentiation of human bone stromal cells (hBMSCs), which constitute bone marrow osteoblast (OS) and adipocyte (AD) progenitor cells, continuous TGF-β1 (10 ng/ml) treatmen...

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Autores principales: Elsafadi, Mona, Manikandan, Muthurangan, Atteya, Muhammad, Abu Dawud, Raed, Almalki, Sami, Ali Kaimkhani, Zahid, Aldahmash, Abdullah, Alajez, Nehad M., Alfayez, Musaad, Kassem, Moustapha, Mahmood, Amer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5589808/
https://www.ncbi.nlm.nih.gov/pubmed/28883483
http://dx.doi.org/10.1038/s41598-017-10983-x
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author Elsafadi, Mona
Manikandan, Muthurangan
Atteya, Muhammad
Abu Dawud, Raed
Almalki, Sami
Ali Kaimkhani, Zahid
Aldahmash, Abdullah
Alajez, Nehad M.
Alfayez, Musaad
Kassem, Moustapha
Mahmood, Amer
author_facet Elsafadi, Mona
Manikandan, Muthurangan
Atteya, Muhammad
Abu Dawud, Raed
Almalki, Sami
Ali Kaimkhani, Zahid
Aldahmash, Abdullah
Alajez, Nehad M.
Alfayez, Musaad
Kassem, Moustapha
Mahmood, Amer
author_sort Elsafadi, Mona
collection PubMed
description TGF-β1, a multifunctional regulator of cell growth and differentiation, is the most abundant bone matrix growth factor. During differentiation of human bone stromal cells (hBMSCs), which constitute bone marrow osteoblast (OS) and adipocyte (AD) progenitor cells, continuous TGF-β1 (10 ng/ml) treatment enhanced OS differentiation as evidenced by increased mineralised matrix production. Conversely, pulsed TGF-β1 administration during the commitment phase increased mature lipid-filled adipocyte numbers. Global gene expression analysis using DNA microarrays in hBMSCs treated with TGF-β1 identified 1587 up- and 1716 down-regulated genes in OS-induced, TGF-β1-treated compared to OS-induced hBMSCs (2.0 fold change (FC), p < 0.05). Gene ontology (GO) analysis revealed enrichment in ‘osteoblast differentiation’ and ‘skeletal system development-associated’ genes and up-regulation of several genes involved in ‘osteoblastic-differentiation related signalling pathways’. In AD-induced, TGF-β1-treated compared to AD-induced hBMSCs, we identified 323 up- and 369 down-regulated genes (2.0 FC, p < 0.05) associated with ‘fat cell differentiation’, ‘fatty acid derivative biosynthesis process’, ‘fatty acid derivative metabolic process’, and ‘inositol lipid-mediated’. Serpin peptidase inhibitor, clade B (ovalbumin), member 2 (SERPINB2) was down-regulated 3-fold in TGF-β1-treated hBMSCs. siRNA-mediated SERPINB2 inhibition enhanced OS and AD differentiation. Thus, TGF-β signalling is important for hBMSC OS and AD differentiation and SERPINB2 is a TGF-β-responsive gene that plays a negative regulatory role in hBMSC differentiation.
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spelling pubmed-55898082017-09-13 SERPINB2 is a novel TGFβ-responsive lineage fate determinant of human bone marrow stromal cells Elsafadi, Mona Manikandan, Muthurangan Atteya, Muhammad Abu Dawud, Raed Almalki, Sami Ali Kaimkhani, Zahid Aldahmash, Abdullah Alajez, Nehad M. Alfayez, Musaad Kassem, Moustapha Mahmood, Amer Sci Rep Article TGF-β1, a multifunctional regulator of cell growth and differentiation, is the most abundant bone matrix growth factor. During differentiation of human bone stromal cells (hBMSCs), which constitute bone marrow osteoblast (OS) and adipocyte (AD) progenitor cells, continuous TGF-β1 (10 ng/ml) treatment enhanced OS differentiation as evidenced by increased mineralised matrix production. Conversely, pulsed TGF-β1 administration during the commitment phase increased mature lipid-filled adipocyte numbers. Global gene expression analysis using DNA microarrays in hBMSCs treated with TGF-β1 identified 1587 up- and 1716 down-regulated genes in OS-induced, TGF-β1-treated compared to OS-induced hBMSCs (2.0 fold change (FC), p < 0.05). Gene ontology (GO) analysis revealed enrichment in ‘osteoblast differentiation’ and ‘skeletal system development-associated’ genes and up-regulation of several genes involved in ‘osteoblastic-differentiation related signalling pathways’. In AD-induced, TGF-β1-treated compared to AD-induced hBMSCs, we identified 323 up- and 369 down-regulated genes (2.0 FC, p < 0.05) associated with ‘fat cell differentiation’, ‘fatty acid derivative biosynthesis process’, ‘fatty acid derivative metabolic process’, and ‘inositol lipid-mediated’. Serpin peptidase inhibitor, clade B (ovalbumin), member 2 (SERPINB2) was down-regulated 3-fold in TGF-β1-treated hBMSCs. siRNA-mediated SERPINB2 inhibition enhanced OS and AD differentiation. Thus, TGF-β signalling is important for hBMSC OS and AD differentiation and SERPINB2 is a TGF-β-responsive gene that plays a negative regulatory role in hBMSC differentiation. Nature Publishing Group UK 2017-09-07 /pmc/articles/PMC5589808/ /pubmed/28883483 http://dx.doi.org/10.1038/s41598-017-10983-x Text en © The Author(s) 2017 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Elsafadi, Mona
Manikandan, Muthurangan
Atteya, Muhammad
Abu Dawud, Raed
Almalki, Sami
Ali Kaimkhani, Zahid
Aldahmash, Abdullah
Alajez, Nehad M.
Alfayez, Musaad
Kassem, Moustapha
Mahmood, Amer
SERPINB2 is a novel TGFβ-responsive lineage fate determinant of human bone marrow stromal cells
title SERPINB2 is a novel TGFβ-responsive lineage fate determinant of human bone marrow stromal cells
title_full SERPINB2 is a novel TGFβ-responsive lineage fate determinant of human bone marrow stromal cells
title_fullStr SERPINB2 is a novel TGFβ-responsive lineage fate determinant of human bone marrow stromal cells
title_full_unstemmed SERPINB2 is a novel TGFβ-responsive lineage fate determinant of human bone marrow stromal cells
title_short SERPINB2 is a novel TGFβ-responsive lineage fate determinant of human bone marrow stromal cells
title_sort serpinb2 is a novel tgfβ-responsive lineage fate determinant of human bone marrow stromal cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5589808/
https://www.ncbi.nlm.nih.gov/pubmed/28883483
http://dx.doi.org/10.1038/s41598-017-10983-x
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