Ruest Louis-Bruno, Xiang Xilin, Lim Kim-Chew, Levi Giovanni, Clouthier David E
Department of Molecular, Cellular and Craniofacial Biology and the Birth Defects Center, University of Louisville, Louisville, KY 40292, USA.
Development. 2004 Sep;131(18):4413-23. doi: 10.1242/dev.01291. Epub 2004 Aug 11.
The lower jaw skeleton is derived from cephalic neural crest (CNC) cells that reside in the mandibular region of the first pharyngeal arch. Endothelin-A receptor (Ednra) signaling in crest cells is crucial for their development, as Ednra(-/-) mice are born with severe craniofacial defects resulting in neonatal lethality. In this study, we undertook a more detailed analysis of mandibular arch development in Ednra(-/-) embryos to better understand the cellular and molecular basis for these defects. We show that most lower jaw structures in Ednra(-/-) embryos undergo a homeotic transformation into maxillary-like structures similar to those observed in Dlx5/Dlx6(-/-) embryos, though lower incisors are still present in both mutant embryos. These structural changes are preceded by aberrant expansion of proximal first arch gene expression into the distal arch, in addition to the previously described loss of a Dlx6/Hand2 expression network. However, a small distal Hand2 expression domain remains. Although this distal expression is not dependent on either Ednra or Dlx5/Dlx6 function, it may require one or more GATA factors. Using fate analysis, we show that these distal Hand2-positive cells probably contribute to lower incisor formation. Together, our results suggest that the establishment of a 'mandibular identity' during lower jaw development requires both Ednra-dependent and -independent signaling pathways.
下颌骨骼起源于位于第一咽弓下颌区域的头部神经嵴(CNC)细胞。嵴细胞中的内皮素A受体(Ednra)信号传导对其发育至关重要,因为Ednra基因敲除(Ednra(-/-))小鼠出生时患有严重的颅面缺陷,导致新生儿死亡。在本研究中,我们对Ednra(-/-)胚胎的下颌弓发育进行了更详细的分析,以更好地了解这些缺陷的细胞和分子基础。我们发现,Ednra(-/-)胚胎中的大多数下颌结构会发生同源异型转化,变成类似于在Dlx5/Dlx6基因敲除(Dlx5/Dlx6(-/-))胚胎中观察到的上颌样结构,不过两种突变胚胎中都仍存在下切牙。除了先前描述的Dlx6/Hand2表达网络缺失外,这些结构变化之前还伴随着近端第一弓基因表达异常扩展到远端弓。然而,仍保留一个小的远端Hand2表达域。虽然这种远端表达不依赖于Ednra或Dlx5/Dlx6的功能,但可能需要一种或多种GATA因子。通过命运分析,我们表明这些远端Hand2阳性细胞可能有助于下切牙的形成。总之,我们的结果表明,下颌发育过程中“下颌身份”的建立需要Ednra依赖和非依赖的信号通路。