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首页> 外文期刊>Mutagenesis >RUNX2 mutation reduces osteogenic differentiation of dental follicle cells in cleidocranial dysplasia
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RUNX2 mutation reduces osteogenic differentiation of dental follicle cells in cleidocranial dysplasia

机译:Runx2突变可降低肌肤发育不良牙卵囊细胞的骨质发生分化

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摘要

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 I alpha 1, 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.
机译:受干扰的永久性牙齿喷发是克利多氏菌发育不良(CCD)的常见,由Runx2的杂合突变引起的骨骼窗紊乱,但潜在的机制仍然不清楚。众所周知,牙科卵泡细胞(DFCS)在牙齿喷发中发挥关键作用,DFC的改变的生物学特性可能会导致CCD患者的永久性牙齿喷发的扰动。因此,收集来自一个CCD患者和正常对照的初级DFC,以研究RUNX2突变对DFC骨重塑活性的影响,并探讨该疾病中永久性牙齿喷发受损的机制。守恒和二级结构分析显示,在本CCD患者中发现的Runx2突变(C.514delt,P.172Fs)位于高度保守的润槽域中并转化了Runx2的结构。在成骨诱导之后,我们发现DFC的DFC的矿化容量和与蛋白质细胞相关基因的表达,包括RUNX2,ALP,OSX,OCN和COL Iα1,在CCD患者中发现的RUNX2突变严重干扰。为了探讨来自CCD患者的DFC的骨质原缺损是否可以通过RUNX2恢复来救出,我们进行了“救援”实验。令人惊讶的是,通过使用慢病毒的野生型RONX2的过度表达,对来自CCD患者的DFC中的成骨缺乏和骨细胞相关基因的异常表达几乎通过使用慢病毒来抵抗。所有这些发现表明,Runx2突变通过抑制骨细胞相关基因可以降低DFC的成沸容量,从而扰乱肺泡骨形成,这用作牙齿喷发的动力。这种效果可以提供有价值的解释和对CCD患者延迟永久性牙齿喷发机制的影响。

著录项

  • 来源
    《Mutagenesis》 |2018年第3期|共12页
  • 作者单位

    Peking Univ Sch &

    Hosp Stomatol Natl Engn Lab Digital &

    Mat Technol Stomatol Beijing Key Lab;

    Peking Univ Sch &

    Hosp Stomatol Natl Engn Lab Digital &

    Mat Technol Stomatol Beijing Key Lab;

    Peking Univ Sch &

    Hosp Stomatol Natl Engn Lab Digital &

    Mat Technol Stomatol Beijing Key Lab;

    Peking Univ Sch &

    Hosp Stomatol Natl Engn Lab Digital &

    Mat Technol Stomatol Beijing Key Lab;

    Peking Univ Sch &

    Hosp Stomatol Natl Engn Lab Digital &

    Mat Technol Stomatol Beijing Key Lab;

    Peking Univ Sch &

    Hosp Stomatol Natl Engn Lab Digital &

    Mat Technol Stomatol Beijing Key Lab;

    Peking Univ Sch &

    Hosp Stomatol Natl Engn Lab Digital &

    Mat Technol Stomatol Beijing Key Lab;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

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