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Gli3Xt-J/Xt-J 小鼠表现出类颅缝早闭,这是由于骨祖细胞增殖和分化的改变所致。

Gli3Xt-J/Xt-J mice exhibit lambdoid suture craniosynostosis which results from altered osteoprogenitor proliferation and differentiation.

机构信息

Department of Orthodontics, Institute of Dentistry, 00014 University of Helsinki, PO Box 41 (Mannerheimintie 172), Finland.

出版信息

Hum Mol Genet. 2010 Sep 1;19(17):3457-67. doi: 10.1093/hmg/ddq258. Epub 2010 Jun 22.

Abstract

Gli3 is a zinc-finger transcription factor whose activity is dependent on the level of hedgehog (Hh) ligand. Hh signaling has key roles during endochondral ossification; however, its role in intramembranous ossification is still unclear. In this study, we show that Gli3 performs a dual role in regulating both osteoprogenitor proliferation and osteoblast differentiation during intramembranous ossification. We discovered that Gli3Xt-J/Xt-J mice, which represent a Gli3-null allele, exhibit craniosynostosis of the lambdoid sutures and that this is accompanied by increased osteoprogenitor proliferation and differentiation. These cellular changes are preceded by ectopic expression of the Hh receptor Patched1 and reduced expression of the transcription factor Twist1 in the sutural mesenchyme. Twist1 is known to delay osteogenesis by binding to and inhibiting the transcription factor Runx2. We found that Runx2 expression in the lambdoid suture was altered in a pattern complimentary to that of Twist1. We therefore propose that loss of Gli3 results in a Twist1-, Runx2-dependent expansion of the sutural osteoprogenitor population as well as enhanced osteoblastic differentiation which results in a bony bridge forming between the parietal and interparietal bones. We show that FGF2 will induce Twist1, normalize osteoprogenitor proliferation and differentiation and rescue the lambdoid suture synostosis in Gli3Xt-J/Xt-J mice. Taken together, we define a novel role for Gli3 in osteoblast development; we describe the first mouse model of lambdoid suture craniosynostosis and show how craniosynostosis can be rescued in this model.

摘要

Gli3 是一种锌指转录因子,其活性依赖于 hedgehog(Hh)配体的水平。Hh 信号在软骨内骨化过程中起着关键作用;然而,其在膜内成骨过程中的作用仍不清楚。在这项研究中,我们表明 Gli3 在调节膜内成骨过程中的成骨前体细胞增殖和成骨细胞分化方面具有双重作用。我们发现,代表 Gli3 缺失等位基因的 Gli3Xt-J/Xt-J 小鼠表现出矢状缝颅缝早闭,并且伴随着成骨前体细胞增殖和分化增加。这些细胞变化之前,Hh 受体 patched1 在缝间基质中呈异位表达,转录因子 Twist1 的表达减少。已知 Twist1 通过与转录因子 Runx2 结合并抑制其转录来延迟成骨。我们发现,矢状缝中 Runx2 的表达模式与 Twist1 的表达模式互补。因此,我们提出,Gli3 的缺失导致缝间成骨前体细胞群体的 Twist1、Runx2 依赖性扩张以及成骨细胞分化增强,导致顶骨和顶间骨之间形成骨桥。我们表明,FGF2 将诱导 Twist1,使成骨前体细胞增殖和分化正常化,并挽救 Gli3Xt-J/Xt-J 小鼠的矢状缝颅缝早闭。总之,我们定义了 Gli3 在成骨细胞发育中的新作用;我们描述了第一个矢状缝颅缝早闭的小鼠模型,并展示了如何在该模型中挽救颅缝早闭。

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