首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Cleft palate defect of Dlx1/2-/- mutant mice is caused by lack of vertical outgrowth in the posterior palate
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Cleft palate defect of Dlx1/2-/- mutant mice is caused by lack of vertical outgrowth in the posterior palate

机译:Dlx1 / 2-/-突变小鼠的pa裂缺损是由于后pa缺乏垂直长出引起的

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Background: Mice lacking the activities of Dlx1 and Dlx2 (Dlx1/2-/-) exhibit cleft palate, one of the most common human congenital defects, but the etiology behind this phenotype has been unknown. Therefore, we analyzed the morphological, cellular, and molecular changes caused by inactivation of Dlx1 and Dlx2 as related to palate development. Results: Dlx1/2-/- mutants exhibited lack of vertical growth in the posterior palate during the earliest stage of palatogenesis. We attributed this growth deficiency to reduced cell proliferation. Expression of a cell cycle regulator Ccnd1 was specifically down-regulated in the same region. Previous studies established that the epithelial-mesenchymal signaling loop involving Shh, Bmp4, and Fgf10 is important for cell proliferation and tissue growth during palate development. This signaling loop was disrupted in Dlx1/2-/- palate. Interestingly, however, the decreases in Ccnd1 expression and mitosis in Dlx1/2-/- mutants were independent of this signaling loop. Finally, Dlx1/2 activity was required for normal expression of several transcription factor genes whose mutation results in palate defects. Conclusions: The functions of Dlx1 and Dlx2 are crucial for the initial formation of the posterior palatal shelves, and that the Dlx genes lie upstream of multiple signaling molecules and transcription factors important for later stages of palatogenesis.
机译:背景:缺乏Dlx1和Dlx2(Dlx1 / 2-/-)活性的小鼠表现出c裂,这是人类最常见的先天性缺陷之一,但该表型的病因尚不清楚。因此,我们分析了与上颚发育相关的Dlx1和Dlx2失活引起的形态,细胞和分子变化。结果:在成lat的最早阶段,Dlx1 / 2-/-突变体在后lack中缺乏垂直生长。我们将这种生长不足归因于细胞增殖减少。细胞周期调节子Ccnd1的表达在相同区域被特异性下调。先前的研究表明,涉及Shh,Bmp4和Fgf10的上皮-间充质信号回路对于上颚发育期间的细胞增殖和组织生长很重要。该信号转导环在Dlx1 / 2-/-味觉中被破坏。然而,有趣的是,Dlx1 / 2-/-突变体中Ccnd1表达的减少和有丝分裂均独立于该信号传导环。最后,Dlx1 / 2活性是几种转录因子基因正常表达所必需的,这些基因的突变导致上颚缺损。结论:Dlx1和Dlx2的功能对于pa后支架的初始形成至关重要,并且Dlx基因位于多个信号分子和转录因子上游,这些因子对于后来的lat骨形成很重要。

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