首页> 外文期刊>Bone >Early onset of Runx2 expression caused craniosynostosis, ectopic bone formation, and limb defects.
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Early onset of Runx2 expression caused craniosynostosis, ectopic bone formation, and limb defects.

机译:Runx2表达的早期发作导致颅突增生,异位骨形成和肢体缺损。

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RUNX2 is an essential transcription factor for osteoblast differentiation, because osteoblast differentiation is completely blocked in Runx2-deficient mice. However, it remains to be clarified whether RUNX2 is sufficient for osteoblast differentiation during embryogenesis. To address this issue, Runx2 transgenic mice were generated under the control of the Prrx1 promoter, which directs the transgene expression to mesenchymal cells before the onset of bone development. The transgene expression was detected in the cranium, limb buds, and the region from the mandible to anterior chest wall. The skull became small and the limbs were shortened depending on the levels of the transgene expression. Early onset of Runx2 expression in the cranial mesenchyme induced mineralization on E13.0, when no mineralization was observed in wild-type mice, and resulted in craniosynostosis as shown by the closure of sutures and fontanelles on E18.5. Col1a1 and Spp1 expressions were detected in the mineralized regions on E12.5-13.5. The limb bones were hypoplastic and fused, and ectopic bones were formed in the hands and feet. Col2a1 expression was inhibited but Col1a1 expression was induced in the limb buds on E12.5. In the anterior chest wall, ectopic bones were formed through the process of intramembranous ossification, interrupting the formation of cartilaginous anlagen of sternal manubrium. These findings indicate that RUNX2 is sufficient to direct mesenchymal cells to osteoblasts and lead to intramembranous bone formation during embryogenesis; Runx2 inhibits chondrocyte differentiation at an early stage; and that Runx2 expression at appropriate level, times and spaces during embryogenesis is essential for skeletal development.
机译:RUNX2是成骨细胞分化必不可少的转录因子,因为成骨细胞分化在Runx2缺陷小鼠中被完全阻断。但是,RUNX2是否足以在胚胎发生过程中分化为成骨细胞,还有待澄清。为了解决这个问题,在Prrx1启动子的控制下生成了Runx2转基因小鼠,该启动子在骨骼发育开始之前将转基因表达引导至间充质细胞。在颅骨,肢芽以及从下颌骨到前胸壁的区域中检测到转基因表达。根据转基因表达水平,头骨变小,四肢缩短。当在野生型小鼠中未观察到矿化时,颅间充质中Runx2表达的早期发作诱导了矿化在E13.0上,并且如E18.5缝合线和font门闭合所显示的,导致颅前突。在E12.5-13.5的矿化区域中检测到Col1a1和Spp1表达。肢体骨发育不良且融合在一起,手脚形成异位骨。在E12.5的四肢芽中,Col2a1表达受到抑制,但诱导了Col1a1表达。在胸前壁中,异位骨通过膜内骨化过程形成,中断了胸骨软骨软骨软骨的形成。这些发现表明,RUNX2足以将间充质细胞导向成骨细胞,并在胚胎发生过程中导致膜内骨形成。 Runx2在早期抑制软骨细胞分化。并且Runx2在胚胎发生过程中的适当水平,时间和空间表达对于骨骼发育至关重要。

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