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RUNX2 突变会损害牙囊细胞的成骨分化。

RUNX2 mutation impairs osteogenic differentiation of dental follicle cells.

机构信息

Department of Preventive Dentistry, Peking University School and Hospital of Stomatology, National Engineering Laboratory for Digital and Material Technology of Stomatology, Beijing Key Laboratory of Digital Stomatology, Beijing, PR China.

Department of Stomatology, Xuanwu Hospital Capital Medical University, Beijing, PR China.

出版信息

Arch Oral Biol. 2019 Jan;97:156-164. doi: 10.1016/j.archoralbio.2018.10.029. Epub 2018 Oct 29.

Abstract

OBJECTIVES

Cleidocranial dysplasia (CCD), mainly caused by RUNX2 mutation, is a dominantly inherited skeletal disorder with many dental abnormalities, characterized by delayed permanent tooth eruption. In this study, we explored a novel RUNX2 mutation and the effect of RUNX2 mutation on osteogenic differentiation of dental follicle cells (DFCs).

DESIGN

A CCD patient with typical clinical features was involved in this study. Conservation and secondary structural analysis of the RUNX2 mutation was first performed. Then DFCs that stably expressing wild-type or mutant RUNX2 were established using lentiviruses. Cell Counting Kit 8 (CCK8) assays were performed to test the proliferation of DFCs. Measurement of alkaline phosphatase (ALP) activity, ALP staining, alizarin red staining and determination of osteoblast-specific genes expression were performed to assess osteogenic capacity of DFCs.

RESULTS

A missense mutation (c.674 G > T, p. R225 L) of RUNX2 gene was identified in the CCD patient. Conservation and secondary structural analysis revealed that the mutation was located in highly conserved Runt domain and altered secondary structure of RUNX2. CCK8 assays showed that mutant RUNX2 increased the proliferation rate of DFCs compared to wild-type RUNX2. ALP activity, ALP staining and alizarin red staining results indicated that mutant RUNX2 decreased the mineralization ability of DFCs. In addition, mutant RUNX2 significantly down-regulated the expression of osteoblast-associated genes.

CONCLUSIONS

RUNX2 mutation can reduce the osteogenic capacity of DFCs by inhibiting osteoblast-associated genes and then affecting bone formation, which participates in bone remodeling during tooth eruption. These effects may be partly responsible for the defects in permanent tooth eruption of CCD patients.

摘要

目的

颅锁骨发育不全(CCD)主要由 RUNX2 突变引起,是一种显性遗传骨骼疾病,伴有许多牙齿异常,其特征为恒牙迟萌。本研究旨在探讨一种新的 RUNX2 突变,并研究 RUNX2 突变对牙囊细胞(DFC)成骨分化的影响。

设计

本研究纳入一名具有典型临床特征的 CCD 患者。首先对 RUNX2 突变进行保守性和二级结构分析。然后利用慢病毒建立稳定表达野生型或突变型 RUNX2 的 DFC。通过细胞计数试剂盒 8(CCK8)检测 DFC 的增殖。通过碱性磷酸酶(ALP)活性测定、ALP 染色、茜素红染色和骨形成相关基因表达检测评估 DFC 的成骨能力。

结果

在 CCD 患者中发现 RUNX2 基因的错义突变(c.674 G > T,p. R225 L)。保守性和二级结构分析表明,该突变位于高度保守的 Runt 结构域,并改变了 RUNX2 的二级结构。CCK8 检测表明,与野生型 RUNX2 相比,突变型 RUNX2 增加了 DFC 的增殖率。ALP 活性、ALP 染色和茜素红染色结果表明,突变型 RUNX2 降低了 DFC 的矿化能力。此外,突变型 RUNX2 显著下调了骨形成相关基因的表达。

结论

RUNX2 突变通过抑制骨形成相关基因从而降低 DFC 的成骨能力,进而影响牙齿萌出过程中的骨形成。这些影响可能部分解释了 CCD 患者恒牙迟萌的缺陷。

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