The Dlx homeobox gene family is expressed in a complex pattern within the embryonic craniofacial ectoderm and ectomesenchyme. A previous study established that Dlx-2 is essential for development of proximal regions of the murine first and second branchial arches. Here we describe the craniofacial phenotype of mice with mutations in Dlx-1 and Dlx-1 and -2. The skeletal and soft tissue analyses of mice with Dlx-1 and Dlx-1 and -2 mutations provide additional evidence that the Dlx genes regulate proximodistal patterning of the branchial arches. This analysis also elucidates distinct and overlapping roles for Dlx-1 and Dlx-2 in craniofacial development. Furthermore, mice lacking both Dlx-1 and -2 have unique abnormalities, including the absence of maxillary molars. Dlx-1 and -2 are expressed in the proximal and distal first and second arches, yet only the proximal regions are abnormal. The nested expression patterns of Dlx-1, -2, -3, -5, and -6 provide evidence for a model that predicts the region-specific requirements for each gene. Finally, the Dlx-2 and Dlx-1 and -2 mutants have ectopic skull components that resemble bones and cartilages found in phylogenetically more primitive vertebrates.

译文

Dlx同源盒基因家族在胚胎颅面外胚层和外胚间质中以复杂的模式表达。先前的研究表明,Dlx-2对于鼠第一和第二鳃弓近端区域的发育至关重要。在这里,我们描述了具有Dlx-1和-2突变的小鼠的颅面表型。对具有Dlx-1和-2突变的小鼠的骨骼和软组织分析提供了额外的证据,表明Dlx基因调节鳃弓的近端模式。此分析还阐明了Dlx-1和Dlx-2在颅面发育中的独特和重叠作用。此外,缺少Dlx-1和-2的小鼠具有独特的异常,包括缺少上颌磨牙。Dlx-1和-2在近侧和远侧第一和第二拱形中表达,但只有近侧区域是异常的。Dlx-1、-2、-3、-5和-6的嵌套表达模式为预测每个基因的区域特异性需求的模型提供了证据。最后,Dlx-2和Dlx-1和-2突变体具有异位的头骨成分,类似于在系统发育上更原始的脊椎动物中发现的骨骼和软骨。

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