首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Prevention of Premature Fusion of Calvarial Suture in GLI-Kruppel Family Member 3 (Gli3)-deficient Mice by Removing One Allele of Runt-related Transcription Factor 2 (Runx2)
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Prevention of Premature Fusion of Calvarial Suture in GLI-Kruppel Family Member 3 (Gli3)-deficient Mice by Removing One Allele of Runt-related Transcription Factor 2 (Runx2)

机译:通过删除一个矮子相关的转录因子2(Runx2)等位基因预防GLI-Kruppel家族成员3(Gli3)缺陷小鼠的颅骨缝线过早融合。

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摘要

Mutations in the gene encoding the zinc finger transcription factor GLI3 (GLI-Kruppel family member 3) have been identified in patients with Grieg cephalopolysyndactyly syndrome in which premature fusion of calvarial suture (craniosynostosis) is an infrequent but important feature. Here, we show that Gli3 acts as a repressor in the developing murine calvaria and that Dlx5, Runx2 type II isoform (Runx2-II), and Bmp2 are expressed ectopically in the calvarial mesenchyme, which results in aberrant osteoblastic differentiation in Gli3-deficient mouse (Gli3Xt-J/Xt-J) and resulted in craniosynostosis. At the same time, enhanced activation of phospho-Smad1/5/8 (pSmad1/5/8), which is a downstream mediator of canonical Bmp signaling, was observed in Gli3Xt-J/Xt-J embryonic calvaria. Therefore, we generated Gli3;Runx2 compound mutant mice to study the effects of decreasing Runx2 dosage in a Gli3Xt-J/Xt-J background. Gli3Xt-J/Xt-J Runx2+/− mice have neither craniosynostosis nor additional ossification centers in interfrontal suture and displayed a normalization of Dlx5, Runx2-II, and pSmad1/5/8 expression as well as sutural mesenchymal cell proliferation. These findings suggest a novel role for Gli3 in regulating calvarial suture development by controlling canonical Bmp-Smad signaling, which integrates a Dlx5/Runx2-II cascade. We propose that targeting Runx2 might provide an attractive way of preventing craniosynostosis in patients.
机译:已在格里格头多发性综合征中发现了编码锌指转录因子GLI3(GLI-Kruppel家族成员3)的基因中的突变,其中颅骨缝线过早融合(颅突狭窄)是一种罕见但重要的特征。在这里,我们显示,Gli3在发育中的鼠颅盖中起阻遏物的作用,并且在颅盖间充质中异位表达Dlx5,Runx2 II型亚型(Runx2-II)和Bmp2,这会导致Gli3缺陷小鼠的成骨细胞异常分化。 (Gli3 Xt-J / Xt-J )导致颅骨前突。同时,在Gli3 Xt-J / Xt-J 胚胎颅盖。因此,我们制备了Gli3; Runx2复合突变小鼠,以研究在Gli3 Xt-J / Xt-J 背景下降低Runx2剂量的作用。 Gli3 Xt-J / Xt-J Runx2 +/- 小鼠在额叶间缝线中既没有颅骨前突也没有骨化中心,并且显示了Dlx5,Runx2-II和pSmad1的正常化/ 5/8表达以及缝线间充质细胞增殖。这些发现表明,Gli3在通过控制经典的Bmp-Smad信号传导(整合了Dlx5 / Runx2-II级联)来调节颅骨缝线发育中具有新的作用。我们建议以Runx2为靶标可能为预防患者的颅骨融合症提供一种有吸引力的方法。

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