Literature DB >> 29947791

RUNX2 mutation reduces osteogenic differentiation of dental follicle cells in cleidocranial dysplasia.

Yang Liu1, Yixiang Wang2, Xiangyu Sun1, Xianli Zhang1,3, Xiaozhe Wang1, Chenying Zhang1, Shuguo Zheng1.   

Abstract

Disturbed permanent tooth eruption is common in cleidocranial dysplasia (CCD), a skeletal disorder caused by heterozygous mutation of RUNX2, but the mechanism underlying is still unclear. As it is well known that dental follicle cells (DFCs) play a critical role in tooth eruption, the changed biological characteristics of DFCs might give rise to disturbance of permanent tooth eruption in CCD patients. Thus, primary DFCs from one CCD patient and normal controls were collected to investigate the effect of RUNX2 mutation on the bone remodeling activity of DFCs and explore the mechanism of impaired permanent tooth eruption in this disease. Conservation and secondary structure analysis revealed that the RUNX2 mutation (c.514delT, p.172fs) found in the present CCD patient was located in the highly conserved RUNT domain and converted the structure of RUNX2. After osteogenic induction, we found that the mineralised capacity of DFCs and the expression of osteoblast-related genes, including RUNX2, ALP, OSX, OCN and Col Iα1, in DFCs was severely interfered by the RUNX2 mutation found in CCD patients. To investigate whether the osteogenic deficiency of DFCs from the CCD patient can be rescued by RUNX2 restoration, we performed 'rescue' experiments. Surprisingly, the osteogenic deficiency and the abnormal expression of osteoblast-associated genes in DFCs from the CCD patient were almost rescued by overexpression of wild-type RUNX2 using lentivirus. All these findings indicate that RUNX2 mutation can reduce the osteogenic capacity of DFCs through inhibiting osteoblast-associated genes, thereby disturbing alveolar bone formation, which serves as a motive force for tooth eruption. This effect may provide valuable explanations and implications for the mechanism of delayed permanent tooth eruption in CCD patients.

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Year:  2018        PMID: 29947791     DOI: 10.1093/mutage/gey010

Source DB:  PubMed          Journal:  Mutagenesis        ISSN: 0267-8357            Impact factor:   3.000


  4 in total

1.  Extracellular vesicle-encapsulated miR-22-3p from bone marrow mesenchymal stem cell promotes osteogenic differentiation via FTO inhibition.

Authors:  Xueliang Zhang; Yongping Wang; Haiyan Zhao; Xingwen Han; Tong Zhao; Peng Qu; Guangjie Li; Wenji Wang
Journal:  Stem Cell Res Ther       Date:  2020-06-10       Impact factor: 6.832

2.  The effects and mechanism of paeoniflorin in promoting osteogenic differentiation of MC3T3-E1.

Authors:  Wei Guo; Xiao-Guang Yang; Yu-Lin Shi; Hong Wang
Journal:  J Orthop Surg Res       Date:  2022-02-14       Impact factor: 2.359

Review 3.  Runx2 and Nell-1 in dental follicle progenitor cells regulate bone remodeling and tooth eruption.

Authors:  Li Zeng; Hong He; Mingjie Sun; Xinyi Gong; Mengqi Zhou; Yaya Hong; Yongjia Wu; Xuepeng Chen; Qianming Chen
Journal:  Stem Cell Res Ther       Date:  2022-09-30       Impact factor: 8.079

4.  VPS4B mutation impairs the osteogenic differentiation of dental follicle cells derived from a patient with dentin dysplasia type I.

Authors:  Qiang Li; Fangli Lu; Tianxuan Chen; Ke Zhang; Yuping Lu; Xiaocong Li; Yingying Wang; Ling Liu; Qing Tian; Fu Xiong; Dong Chen
Journal:  Int J Oral Sci       Date:  2020-07-31       Impact factor: 6.344

  4 in total

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