Orofacial Development and Regeneration, Institute of Oral Biology, Center for Dental Medicine, University of Zurich, Zurich, Switzerland.
PLoS One. 2013;8(3):e59463. doi: 10.1371/journal.pone.0059463. Epub 2013 Mar 14.
Palatogenesis is a complex process implying growth, elevation and fusion of the two lateral palatal shelves during embryogenesis. This process is tightly controlled by genetic and mechanistic cues that also coordinate the growth of other orofacial structures. Failure at any of these steps can result in cleft palate, which is a frequent craniofacial malformation in humans. To understand the etiology of cleft palate linked to the BMP signaling pathway, we studied palatogenesis in Bmp7-deficient mouse embryos. Bmp7 expression was found in several orofacial structures including the edges of the palatal shelves prior and during their fusion. Bmp7 deletion resulted in a general alteration of oral cavity morphology, unpaired palatal shelf elevation, delayed shelf approximation, and subsequent lack of fusion. Cell proliferation and expression of specific genes involved in palatogenesis were not altered in Bmp7-deficient embryos. Conditional ablation of Bmp7 with Keratin14-Cre or Wnt1-Cre revealed that neither epithelial nor neural crest-specific loss of Bmp7 alone could recapitulate the cleft palate phenotype. Palatal shelves from mutant embryos were able to fuse when cultured in vitro as isolated shelves in proximity, but not when cultured as whole upper jaw explants. Thus, deformations in the oral cavity of Bmp7-deficient embryos such as the shorter and wider mandible were not solely responsible for cleft palate formation. These findings indicate a requirement for Bmp7 for the coordination of both developmental and mechanistic aspects of palatogenesis.
腭发生是一个复杂的过程,涉及胚胎发生过程中两个外侧腭突的生长、抬高和融合。这个过程受到遗传和机械线索的严密控制,这些线索还协调着其他口面结构的生长。在这些步骤中的任何一步失败都可能导致腭裂,这是人类常见的颅面畸形。为了了解与 BMP 信号通路相关的腭裂的病因,我们研究了 Bmp7 缺陷型小鼠胚胎的腭发生。在腭突融合之前和期间,Bmp7 在包括腭突边缘在内的几个口面结构中表达。Bmp7 缺失导致口腔形态的普遍改变、未配对的腭突抬高、腭突融合延迟以及随后的融合缺失。Bmp7 缺陷型胚胎中的细胞增殖和参与腭发生的特定基因的表达没有改变。用角蛋白 14-Cre 或 Wnt1-Cre 条件性消融 Bmp7 表明,上皮或神经嵴特异性的 Bmp7 缺失都不能重现腭裂表型。当作为单独的近距分离的腭突在体外培养时,突变胚胎的腭突能够融合,但当作为整个上颌外植体培养时不能融合。因此,Bmp7 缺陷型胚胎口腔中的变形,如较短和较宽的下颌骨,并不是腭裂形成的唯一原因。这些发现表明 Bmp7 对于腭发生的发育和机械方面的协调都有要求。