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首页> 外文期刊>Mechanisms of Development >Msx1 and Dlx5 act independently in development of craniofacial skeleton, but converge on the regulation of Bmp signaling in palate formation
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Msx1 and Dlx5 act independently in development of craniofacial skeleton, but converge on the regulation of Bmp signaling in palate formation

机译:Msx1和Dlx5在颅面骨架的发育中独立发挥作用,但会集中在味蕾形成过程中对Bmp信号的调控

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摘要

Msx and Dlx homeoproteins control the morphogenesis and organization of craniofacial skeletal structures, specifically those derived from the pharyngeal arches. In vitro Msx and Dlx proteins have opposing transcriptional properties and form heterodimeric complexes via their homeodomain with reciprocal functional repression. In this report we examine the skeletal phenotype of Msx1; Dlx5 double knock-out (DKO) mice in relationship with their expression territories during craniofacial development. Co-expression of Dlx5 and Msx1 is only observed in embryonic tissues in which these genes have independent functions, and thus direct protein interactions are unlikely to control morphogenesis of the cranium. The DKO craniofacial phenotypes indicate a complex interplay between these genes, acting independently (mandible and middle ear), synergistically (deposition of bone tissue) or converging on the same morphogenetic process (palate growth and closure). In the latter case, the absence of Dlx5 rescues in part the Msx1-dependent defects in palate growth and elevation. At the basis of this effect, our data implicate the Bmp (Bmp7, Bmp4)/Bmp antagonist (Follistatin) signal: in the Dlx5(-/-) palate changes in the expression level of Bmp7 and Follistatin counteract the reduced Bmp4 expression. These results highlight the importance of precise spatial and temporal regulation of the Bmp/Bmp antagonist system during palate closure.
机译:Msx和Dlx同源蛋白控制颅面骨骼结构的形态发生和组织,特别是来源于咽弓的结构。体外Msx和Dlx蛋白具有相反的转录特性,并通过其同源结构域形成互异的功能抑制,形成异二聚体复合物。在本报告中,我们研究了Msx1的骨骼表型。颅面发育过程中Dlx5双敲除(DKO)小鼠与其表达区域的关系。 Dlx5和Msx1的共表达仅在这些基因具有独立功能的胚胎组织中观察到,因此直接的蛋白质相互作用不太可能控制颅骨的形态发生。 DKO颅面表型表明这些基因之间有复杂的相互作用,它们独立起作用(下颌骨和中耳),协同作用(骨组织沉积)或在同一形态发生过程中汇合(味觉生长和闭合)。在后一种情况下,Dlx5的缺失可以部分缓解Msx1依赖性的pa生长和抬高缺陷。在这种作用的基础上,我们的数据暗示了Bmp(Bmp7,Bmp4)/ Bmp拮抗剂(Follistatin)信号:在Dlx5(-/-)味蕾中,Bmp7的表达水平发生变化,而Follistatin抵消了Bmp4表达的降低。这些结果凸显了在closure闭合期间精确控制Bmp / Bmp拮抗剂系统的空间和时间的重要性。

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