Literature DB >> 21898406

The transcription factor osterix (SP7) regulates BMP6-induced human osteoblast differentiation.

Fengchang Zhu1, Michael S Friedman, Weijun Luo, Peter Woolf, Kurt D Hankenson.   

Abstract

The transcription factor osterix (Sp7) is essential for osteoblastogenesis and bone formation in mice. Genome wide association studies have demonstrated that osterix is associated with bone mineral density in humans; however, the molecular significance of osterix in human osteoblast differentiation is poorly described. In this study we have characterized the role of osterix in human mesenchymal progenitor cell (hMSC) differentiation. We first analyzed temporal microarray data of primary hMSC treated with bone morphogenetic protein-6 (BMP6) using clustering to identify genes that are associated with osterix expression. Osterix clusters with a set of osteoblast-associated extracellular matrix (ECM) genes, including bone sialoprotein (BSP) and a novel set of proteoglycans, osteomodulin (OMD), osteoglycin, and asporin. Maximum expression of these genes is dependent upon both the concentration and duration of BMP6 exposure. Next we overexpressed and repressed osterix in primary hMSC using retrovirus. The enforced expression of osterix had relatively minor effects on osteoblastic gene expression independent of exogenous BMP6. However, in the presence of BMP6, osterix overexpression enhanced expression of the aforementioned ECM genes. Additionally, osterix overexpression enhanced BMP6 induced osteoblast mineralization, while inhibiting hMSC proliferation. Conversely, osterix knockdown maintained hMSC in an immature state by decreasing expression of these ECM genes and decreasing mineralization and hMSC proliferation. Overexpression of the osterix regulated gene OMD with retrovirus promoted mineralization of hMSC. These results suggest that osterix is necessary, but not sufficient for hMSC osteoblast differentiation. Osterix regulates the expression of a set of ECM proteins which are involved in terminal osteoblast differentiation.
Copyright © 2011 Wiley Periodicals, Inc.

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Year:  2012        PMID: 21898406      PMCID: PMC3241898          DOI: 10.1002/jcp.23010

Source DB:  PubMed          Journal:  J Cell Physiol        ISSN: 0021-9541            Impact factor:   6.384


  24 in total

1.  Inhibition of Wnt signaling by the osteoblast-specific transcription factor Osterix.

Authors:  Chi Zhang; Kyucheol Cho; Yehong Huang; Jon P Lyons; Xin Zhou; Krishna Sinha; Pierre D McCrea; Benoit de Crombrugghe
Journal:  Proc Natl Acad Sci U S A       Date:  2008-05-05       Impact factor: 11.205

2.  p38 regulates expression of osteoblast-specific genes by phosphorylation of osterix.

Authors:  María José Ortuño; Silvia Ruiz-Gaspà; Edgardo Rodríguez-Carballo; Antonio R G Susperregui; Ramon Bartrons; José Luis Rosa; Francesc Ventura
Journal:  J Biol Chem       Date:  2010-08-03       Impact factor: 5.157

3.  Multiple functions of Osterix are required for bone growth and homeostasis in postnatal mice.

Authors:  Xin Zhou; Zhaoping Zhang; Jian Q Feng; Vladmir M Dusevich; Krishna Sinha; Hua Zhang; Bryant G Darnay; Benoit de Crombrugghe
Journal:  Proc Natl Acad Sci U S A       Date:  2010-07-06       Impact factor: 11.205

4.  Osteogenic differentiation of human mesenchymal stem cells is regulated by bone morphogenetic protein-6.

Authors:  Michael S Friedman; Michael W Long; Kurt D Hankenson
Journal:  J Cell Biochem       Date:  2006-06-01       Impact factor: 4.429

5.  BMP2 regulates Osterix through Msx2 and Runx2 during osteoblast differentiation.

Authors:  Takuma Matsubara; Kumiko Kida; Akira Yamaguchi; Kenji Hata; Fumitaka Ichida; Hiroko Meguro; Hiroyuki Aburatani; Riko Nishimura; Toshiyuki Yoneda
Journal:  J Biol Chem       Date:  2008-08-14       Impact factor: 5.157

6.  Osteoadherin is upregulated by mature osteoblasts and enhances their in vitro differentiation and mineralization.

Authors:  Anders P Rehn; Radim Cerny; Rachael V Sugars; Nina Kaukua; Mikael Wendel
Journal:  Calcif Tissue Int       Date:  2008-06       Impact factor: 4.333

7.  Osterix induces osteogenic gene expression but not differentiation in primary human fetal mesenchymal stem cells.

Authors:  Hitoshi Kurata; Pascale V Guillot; Jerry Chan; Nicholas M Fisk
Journal:  Tissue Eng       Date:  2007-07

8.  Osterix enhances proliferation and osteogenic potential of bone marrow stromal cells.

Authors:  Qisheng Tu; Paloma Valverde; Jake Chen
Journal:  Biochem Biophys Res Commun       Date:  2006-01-30       Impact factor: 3.575

9.  Identification of a key residue mediating bone morphogenetic protein (BMP)-6 resistance to noggin inhibition allows for engineered BMPs with superior agonist activity.

Authors:  Kening Song; Carola Krause; Songting Shi; Marilyn Patterson; Robert Suto; Lovorka Grgurevic; Slobodan Vukicevic; Maarten van Dinther; Dean Falb; Peter Ten Dijke; Moulay Hicham Alaoui-Ismaili
Journal:  J Biol Chem       Date:  2010-01-04       Impact factor: 5.157

10.  Common variants in the region around Osterix are associated with bone mineral density and growth in childhood.

Authors:  Nicholas J Timpson; Jon H Tobias; J Brent Richards; Nicole Soranzo; Emma L Duncan; Anne-Marie Sims; Pamela Whittaker; Vasudev Kumanduri; Guangju Zhai; Beate Glaser; John Eisman; Graeme Jones; Geoff Nicholson; Richard Prince; Ego Seeman; Tim D Spector; Matthew A Brown; Leena Peltonen; George Davey Smith; Panos Deloukas; David M Evans
Journal:  Hum Mol Genet       Date:  2009-01-30       Impact factor: 6.150

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  30 in total

1.  Non-cell-autonomous hedgehog signaling promotes murine B lymphopoiesis from hematopoietic progenitors.

Authors:  Christopher L Cooper; Richard R Hardy; Michael Reth; Stephen Desiderio
Journal:  Blood       Date:  2012-04-18       Impact factor: 22.113

2.  Mitotic Inheritance of mRNA Facilitates Translational Activation of the Osteogenic-Lineage Commitment Factor Runx2 in Progeny of Osteoblastic Cells.

Authors:  Nelson Varela; Alejandra Aranguiz; Carlos Lizama; Hugo Sepulveda; Marcelo Antonelli; Roman Thaler; Ricardo D Moreno; Martin Montecino; Gary S Stein; Andre J van Wijnen; Mario Galindo
Journal:  J Cell Physiol       Date:  2015-09-18       Impact factor: 6.384

Review 3.  Biological functions of mesenchymal stem cells and clinical implications.

Authors:  Abderrahim Naji; Masamitsu Eitoku; Benoit Favier; Frédéric Deschaseaux; Nathalie Rouas-Freiss; Narufumi Suganuma
Journal:  Cell Mol Life Sci       Date:  2019-05-04       Impact factor: 9.261

4.  Analysis of gene expression profiles between apical papilla tissues, stem cells from apical papilla and cell sheet to identify the key modulators in MSCs niche.

Authors:  Shu Diao; Xiao Lin; Liping Wang; Rui Dong; Juan Du; Dongmei Yang; Zhipeng Fan
Journal:  Cell Prolif       Date:  2017-02-01       Impact factor: 6.831

5.  Pituitary adenylate cyclase-activating polypeptide (PACAP) signalling enhances osteogenesis in UMR-106 cell line.

Authors:  Tamás Juhász; Csaba Matta; Éva Katona; Csilla Somogyi; Roland Takács; Tibor Hajdú; Solveig Lind Helgadottir; János Fodor; László Csernoch; Gábor Tóth; Éva Bakó; Dóra Reglődi; Andrea Tamás; Róza Zákány
Journal:  J Mol Neurosci       Date:  2014-08-12       Impact factor: 3.444

Review 6.  Vascular calcification: Mechanisms of vascular smooth muscle cell calcification.

Authors:  Jane A Leopold
Journal:  Trends Cardiovasc Med       Date:  2014-10-30       Impact factor: 6.677

7.  Osteogenic changes in kidneys of hyperoxaluric rats.

Authors:  Sunil Joshi; William L Clapp; Wei Wang; Saeed R Khan
Journal:  Biochim Biophys Acta       Date:  2015-06-27

8.  Osteoglycin and Bone-a Systematic Review.

Authors:  Jakob Starup-Linde; Rikke Viggers; Aase Handberg
Journal:  Curr Osteoporos Rep       Date:  2019-10       Impact factor: 5.096

9.  Endothelial-to-Osteoblast Conversion Generates Osteoblastic Metastasis of Prostate Cancer.

Authors:  Song-Chang Lin; Yu-Chen Lee; Guoyu Yu; Chien-Jui Cheng; Xin Zhou; Khoi Chu; Monzur Murshed; Nhat-Tu Le; Laura Baseler; Jun-Ichi Abe; Keigi Fujiwara; Benoit deCrombrugghe; Christopher J Logothetis; Gary E Gallick; Li-Yuan Yu-Lee; Sankar N Maity; Sue-Hwa Lin
Journal:  Dev Cell       Date:  2017-06-05       Impact factor: 12.270

10.  Direct assessment of articular cartilage and underlying subchondral bone reveals a progressive gene expression change in human osteoarthritic knees.

Authors:  C-H Chou; C-H Lee; L-S Lu; I-W Song; H-P Chuang; S-Y Kuo; J-Y Wu; Y-T Chen; V B Kraus; C-C Wu; M T M Lee
Journal:  Osteoarthritis Cartilage       Date:  2012-12-05       Impact factor: 6.576

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