Tavares Andre L P, Cox Timothy C, Maxson Robert M, Ford Heide L, Clouthier David E
Department of Craniofacial Biology, University of Colorado Anschutz Medical Campus, Aurora, CO 80045, USA.
Department of Pediatrics (Craniofacial Medicine), University of Washington, and Center for Developmental Biology & Regenerative Medicine, Seattle Children's Research Institute, Seattle, WA 98101, USA.
Development. 2017 Jun 1;144(11):2021-2031. doi: 10.1242/dev.145144. Epub 2017 Apr 28.
Jaw morphogenesis is a complex event mediated by inductive signals that establish and maintain the distinct developmental domains required for formation of hinged jaws, the defining feature of gnathostomes. The mandibular portion of pharyngeal arch 1 is patterned dorsally by Jagged-Notch signaling and ventrally by endothelin receptor A (EDNRA) signaling. Loss of EDNRA signaling disrupts normal ventral gene expression, the result of which is homeotic transformation of the mandible into a maxilla-like structure. However, loss of Jagged-Notch signaling does not result in significant changes in maxillary development. Here we show in mouse that the transcription factor SIX1 regulates dorsal arch development not only by inducing dorsal expression but also by inhibiting endothelin 1 () expression in the pharyngeal endoderm of the dorsal arch, thus preventing dorsal EDNRA signaling. In the absence of SIX1, but not JAG1, aberrant EDNRA signaling in the dorsal domain results in partial duplication of the mandible. Together, our results illustrate that SIX1 is the central mediator of dorsal mandibular arch identity, thus ensuring separation of bone development between the upper and lower jaws.
颌骨形态发生是一个复杂的过程,由诱导信号介导,这些信号建立并维持形成铰接式颌骨所需的不同发育区域,铰接式颌骨是有颌类动物的标志性特征。咽弓1的下颌部分在背侧由锯齿状-Notch信号通路形成模式,在腹侧由内皮素受体A(EDNRA)信号通路形成模式。EDNRA信号通路的缺失会破坏正常的腹侧基因表达,其结果是下颌骨发生同源异型转化,变成类似上颌骨的结构。然而,锯齿状-Notch信号通路的缺失并不会导致上颌骨发育的显著变化。在这里,我们在小鼠中发现,转录因子SIX1不仅通过诱导背侧表达来调节背侧弓的发育,还通过抑制背侧弓咽内胚层中的内皮素1(ET-1)表达来调节,从而阻止背侧EDNRA信号通路。在没有SIX1但有JAG1的情况下,背侧区域异常的EDNRA信号通路会导致下颌骨部分重复。总之,我们的结果表明SIX1是背侧下颌弓身份的核心调节因子,从而确保上下颌骨之间骨发育的分离。