Feng Weiguo, Choi Irene, Clouthier David E, Niswander Lee, Williams Trevor
Department of Craniofacial Biology and Cell and Developmental Biology, University of Colorado Anschutz Medical Campus, Aurora, Colorado.
Genesis. 2013 Oct;51(10):677-89. doi: 10.1002/dvg.22416. Epub 2013 Aug 30.
Mouse models provide valuable opportunities for probing the underlying pathology of human birth defects. By using an N-ethyl-N-nitrosourea-based screen for recessive mutations affecting craniofacial anatomy, we isolated a mouse strain, Dogface-like (DL), with abnormal skull and snout morphology. Examination of the skull indicated that these mice developed craniosynostosis of the lambdoid suture. Further analysis revealed skeletal defects related to the pathology of basal cell nevus syndrome (BCNS) including defects in development of the limbs, scapula, ribcage, secondary palate, cranial base, and cranial vault. In humans, BCNS is often associated with mutations in the Hedgehog receptor PTCH1 and genetic mapping in DL identified a point mutation at a splice donor site in Ptch1. By using genetic complementation analysis we determined that DL is a hypomorphic allele of Ptch1, leading to increased Hedgehog signaling. Two aberrant transcripts are generated by the mutated Ptch1(DL) gene, which would be predicted to reduce significantly the levels of functional Patched1 protein. This new Ptch1 allele broadens the mouse genetic reagents available to study the Hedgehog pathway and provides a valuable means to study the underlying skeletal abnormalities in BCNS. In addition, these results strengthen the connection between elevated Hedgehog signaling and craniosynostosis.
小鼠模型为探究人类出生缺陷的潜在病理提供了宝贵机会。通过使用基于N-乙基-N-亚硝基脲的方法筛选影响颅面解剖结构的隐性突变,我们分离出了一种小鼠品系,即类犬面(DL),其具有异常的颅骨和口鼻形态。对颅骨的检查表明,这些小鼠发生了人字缝颅缝早闭。进一步分析发现了与基底细胞痣综合征(BCNS)病理相关的骨骼缺陷,包括四肢、肩胛骨、胸廓、继发腭、颅底和颅顶发育缺陷。在人类中,BCNS通常与刺猬信号通路受体PTCH1的突变有关,而对DL的基因定位确定了Ptch1剪接供体位点的一个点突变。通过基因互补分析,我们确定DL是Ptch1的一个低表达等位基因,导致刺猬信号通路增强。突变的Ptch1(DL)基因产生两种异常转录本,预计这将显著降低功能性Patched1蛋白的水平。这个新的Ptch1等位基因拓宽了用于研究刺猬信号通路的小鼠遗传试剂,并为研究BCNS潜在的骨骼异常提供了有价值的手段。此外,这些结果加强了刺猬信号通路增强与颅缝早闭之间的联系。