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A Runx2 threshold for the cleidocranial dysplasia phenotype

机译:颅骨发育不良表型的Runx2阈值

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Cleidocranial dysplasia (CCD) in humans is an autosomal-dominant skeletal disease that results from mutations in the bone-specific transcription factor RUNX2 (CBFA1/AML3). However, distinct RUNX2 mutations in CCD do not correlate with the severity of the disease. Here we generated a new mouse model with a hypomorphic Runx2 mutant allele (Runx2neo7), in which only part of the transcript is processed to full-length (wild-type) Runx2 mRNA. Homozygous Runx2neo7eo7 mice express a reduced level of wild-type Runx2 mRNA (55–70%) and protein. This mouse model allowed us to establish the minimal requirement of functional Runx2 for normal bone development. Runx2neo7eo7 mice have grossly normal skeletons with no abnormalities observed in the growth plate, but do exhibit developmental defects in calvaria and clavicles that persist through post-natal growth. Clavicle defects are caused by disrupted endochondral bone formation during embryogenesis. These hypomorphic mice have altered calvarial bone volume, as observed by histology and microCT imaging, and decreased expression of osteoblast marker genes. The bone phenotype of the heterozygous mice, which have 79–84% of wild-type Runx2 mRNA, is normal. These results show there is a critical gene dosage requirement of functional Runx2 for the formation of intramembranous bone tissues during embryogenesis. A decrease to 70% of wild-type Runx2 levels results in the CCD syndrome, whereas levels 79% produce a normal skeleton. Our findings suggest that the range of bone phenotypes in CCD patients is attributable to quantitative reduction in the functional activity of RUNX2.
机译:人类的颅骨发育不良(CCD)是一种常染色体显性遗传的骨骼疾病,由骨骼特异性转录因子RUNX2(CBFA1 / AML3)的突变引起。但是,CCD中独特的RUNX2突变与疾病的严重程度无关。在这里,我们生成了一个具有亚同型Runx2突变体等位基因(Runx2 neo7 )的新小鼠模型,其中只有一部分转录物被加工成全长(野生型)Runx2 mRNA。纯合子Runx2 neo7 / neo7 小鼠表达的野生型Runx2 mRNA和蛋白水平降低(55-70%)。这种小鼠模型使我们能够为正常骨骼发育建立功能性Runx2的最低要求。 Runx2 neo7 / neo7 小鼠的骨骼基本正常,在生长板中未见异常,但在颅骨和锁骨中确实表现出发育缺陷,并在出生后一直持续存在。锁骨缺损是由胚胎发生过程中软骨内骨形成破坏引起的。通过组织学和microCT成像观察,这些亚型小鼠的颅骨骨量已改变,成骨细胞标记基因的表达降低。具有79-84%的野生型Runx2 mRNA的杂合小鼠的骨表型是正常的。这些结果表明,在胚胎发生过程中,功能性Runx2对于形成膜内骨组织有关键的基因剂量要求。野生型Runx2水平降低至70%会导致CCD综合征,而> 79%的水平会产生正常骨骼。我们的发现表明,CCD患者的骨表型范围可归因于RUNX2功能活性的定量降低。

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