Cargando…

Special AT‐rich sequence‐binding protein 2 (Satb2) synergizes with Bmp9 and is essential for osteo/odontogenic differentiation of mouse incisor mesenchymal stem cells

OBJECTIVES: Mouse incisor mesenchymal stem cells (MSCs) have self‐renewal ability and osteo/odontogenic differentiation potential. However, the mechanism controlling the continuous self‐renewal and osteo/odontogenic differentiation of mouse incisor MSCs remains unclear. Special AT‐rich sequence‐bind...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Qiuman, Zheng, Liwen, Zhang, Yuxin, Huang, Xia, Wang, Feilong, Li, Shuang, Yang, Zhuohui, Liang, Fang, Hu, Jing, Jiang, Yucan, Li, Yeming, Zhou, Pengfei, Luo, Wenping, Zhang, Hongmei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8016638/
https://www.ncbi.nlm.nih.gov/pubmed/33660290
http://dx.doi.org/10.1111/cpr.13016
_version_ 1783673901204635648
author Chen, Qiuman
Zheng, Liwen
Zhang, Yuxin
Huang, Xia
Wang, Feilong
Li, Shuang
Yang, Zhuohui
Liang, Fang
Hu, Jing
Jiang, Yucan
Li, Yeming
Zhou, Pengfei
Luo, Wenping
Zhang, Hongmei
author_facet Chen, Qiuman
Zheng, Liwen
Zhang, Yuxin
Huang, Xia
Wang, Feilong
Li, Shuang
Yang, Zhuohui
Liang, Fang
Hu, Jing
Jiang, Yucan
Li, Yeming
Zhou, Pengfei
Luo, Wenping
Zhang, Hongmei
author_sort Chen, Qiuman
collection PubMed
description OBJECTIVES: Mouse incisor mesenchymal stem cells (MSCs) have self‐renewal ability and osteo/odontogenic differentiation potential. However, the mechanism controlling the continuous self‐renewal and osteo/odontogenic differentiation of mouse incisor MSCs remains unclear. Special AT‐rich sequence‐binding protein 2 (SATB2) positively regulates craniofacial patterning, bone development and regeneration, whereas SATB2 deletion or mutation leads to craniomaxillofacial dysplasia and delayed tooth and root development, similar to bone morphogenetic protein (BMP) loss‐of‐function phenotypes. However, the detailed mechanism underlying the SATB2 role in odontogenic MSCs is poorly understood. The aim of this study was to investigate whether SATB2 can regulate self‐renewal and osteo/odontogenic differentiation of odontogenic MSCs. MATERIALS AND METHODS: Satb2 expression was detected in the rapidly renewing mouse incisor mesenchyme by immunofluorescence staining, quantitative RT‐PCR and Western blot analysis. Ad‐Satb2 and Ad‐siSatb2 were constructed to evaluate the effect of Satb2 on odontogenic MSCs self‐renewal and osteo/odontogenic differentiation properties and the potential role of Satb2 with the osteogenic factor bone morphogenetic protein 9 (Bmp 9) in vitro and in vivo. RESULTS: Satb2 was found to be expressed in mesenchymal cells and pre‐odontoblasts/odontoblasts. We further discovered that Satb2 effectively enhances mouse incisor MSCs self‐renewal. Satb2 acted synergistically with the potent osteogenic factor Bmp9 in inducing osteo/odontogenic differentiation of mouse incisor MSCs in vitro and in vivo. CONCLUSIONS: Satb2 promotes self‐renewal and osteo/odontogenic differentiation of mouse incisor MSCs. Thus, Satb2 can cooperate with Bmp9 as a new efficacious bio‐factor for osteogenic regeneration and tooth engineering.
format Online
Article
Text
id pubmed-8016638
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-80166382021-04-02 Special AT‐rich sequence‐binding protein 2 (Satb2) synergizes with Bmp9 and is essential for osteo/odontogenic differentiation of mouse incisor mesenchymal stem cells Chen, Qiuman Zheng, Liwen Zhang, Yuxin Huang, Xia Wang, Feilong Li, Shuang Yang, Zhuohui Liang, Fang Hu, Jing Jiang, Yucan Li, Yeming Zhou, Pengfei Luo, Wenping Zhang, Hongmei Cell Prolif Original Articles OBJECTIVES: Mouse incisor mesenchymal stem cells (MSCs) have self‐renewal ability and osteo/odontogenic differentiation potential. However, the mechanism controlling the continuous self‐renewal and osteo/odontogenic differentiation of mouse incisor MSCs remains unclear. Special AT‐rich sequence‐binding protein 2 (SATB2) positively regulates craniofacial patterning, bone development and regeneration, whereas SATB2 deletion or mutation leads to craniomaxillofacial dysplasia and delayed tooth and root development, similar to bone morphogenetic protein (BMP) loss‐of‐function phenotypes. However, the detailed mechanism underlying the SATB2 role in odontogenic MSCs is poorly understood. The aim of this study was to investigate whether SATB2 can regulate self‐renewal and osteo/odontogenic differentiation of odontogenic MSCs. MATERIALS AND METHODS: Satb2 expression was detected in the rapidly renewing mouse incisor mesenchyme by immunofluorescence staining, quantitative RT‐PCR and Western blot analysis. Ad‐Satb2 and Ad‐siSatb2 were constructed to evaluate the effect of Satb2 on odontogenic MSCs self‐renewal and osteo/odontogenic differentiation properties and the potential role of Satb2 with the osteogenic factor bone morphogenetic protein 9 (Bmp 9) in vitro and in vivo. RESULTS: Satb2 was found to be expressed in mesenchymal cells and pre‐odontoblasts/odontoblasts. We further discovered that Satb2 effectively enhances mouse incisor MSCs self‐renewal. Satb2 acted synergistically with the potent osteogenic factor Bmp9 in inducing osteo/odontogenic differentiation of mouse incisor MSCs in vitro and in vivo. CONCLUSIONS: Satb2 promotes self‐renewal and osteo/odontogenic differentiation of mouse incisor MSCs. Thus, Satb2 can cooperate with Bmp9 as a new efficacious bio‐factor for osteogenic regeneration and tooth engineering. John Wiley and Sons Inc. 2021-03-04 /pmc/articles/PMC8016638/ /pubmed/33660290 http://dx.doi.org/10.1111/cpr.13016 Text en © 2021 The Authors. Cell Proliferation Published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Chen, Qiuman
Zheng, Liwen
Zhang, Yuxin
Huang, Xia
Wang, Feilong
Li, Shuang
Yang, Zhuohui
Liang, Fang
Hu, Jing
Jiang, Yucan
Li, Yeming
Zhou, Pengfei
Luo, Wenping
Zhang, Hongmei
Special AT‐rich sequence‐binding protein 2 (Satb2) synergizes with Bmp9 and is essential for osteo/odontogenic differentiation of mouse incisor mesenchymal stem cells
title Special AT‐rich sequence‐binding protein 2 (Satb2) synergizes with Bmp9 and is essential for osteo/odontogenic differentiation of mouse incisor mesenchymal stem cells
title_full Special AT‐rich sequence‐binding protein 2 (Satb2) synergizes with Bmp9 and is essential for osteo/odontogenic differentiation of mouse incisor mesenchymal stem cells
title_fullStr Special AT‐rich sequence‐binding protein 2 (Satb2) synergizes with Bmp9 and is essential for osteo/odontogenic differentiation of mouse incisor mesenchymal stem cells
title_full_unstemmed Special AT‐rich sequence‐binding protein 2 (Satb2) synergizes with Bmp9 and is essential for osteo/odontogenic differentiation of mouse incisor mesenchymal stem cells
title_short Special AT‐rich sequence‐binding protein 2 (Satb2) synergizes with Bmp9 and is essential for osteo/odontogenic differentiation of mouse incisor mesenchymal stem cells
title_sort special at‐rich sequence‐binding protein 2 (satb2) synergizes with bmp9 and is essential for osteo/odontogenic differentiation of mouse incisor mesenchymal stem cells
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8016638/
https://www.ncbi.nlm.nih.gov/pubmed/33660290
http://dx.doi.org/10.1111/cpr.13016
work_keys_str_mv AT chenqiuman specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT zhengliwen specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT zhangyuxin specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT huangxia specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT wangfeilong specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT lishuang specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT yangzhuohui specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT liangfang specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT hujing specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT jiangyucan specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT liyeming specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT zhoupengfei specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT luowenping specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells
AT zhanghongmei specialatrichsequencebindingprotein2satb2synergizeswithbmp9andisessentialforosteoodontogenicdifferentiationofmouseincisormesenchymalstemcells