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Temporal perturbations in sonic hedgehog signaling elicit the spectrum of holoprosencephaly phenotypes

机译:声音刺猬信号的时间扰动引起全前脑表型的频谱。

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摘要

One of the most perplexing questions in clinical genetics is why patients with identical gene mutations oftentimes exhibit radically different clinical features. This inconsistency between genotype and phenotype is illustrated in the malformation spectrum of holoprosencephaly (HPE). Family members carrying identical mutations in sonic hedgehog (SHH) can exhibit a variety of facial features ranging from cyclopia to subtle midline asymmetries. Such intrafamilial variability may arise from environmental factors acting in conjunction with gene mutations that collectively reduce SHH activity below a critical threshold. We undertook a series of experiments to test the hypothesis that modifying the activity of the SHH signaling pathway at discrete periods of embryonic development could account for the phenotypic spectrum of HPE. Exposing avian embryos to cyclopamine during critical periods of craniofacial development recreated a continuum of HPE-related defects. The craniofacial malformations included hypotelorism, midfacial hypoplasia, and facial clefting and were not the result of excessive crest cell apoptosis. Rather, they resulted from molecular reprogramming of an organizing center whose activity controls outgrowth and patterning of the mid and upper face. Collectively, these data reveal one mechanism by which the variable expressivity of a disorder such as HPE can be produced through temporal disruption of a single molecular pathway.
机译:临床遗传学中最困惑的问题之一是为什么具有相同基因突变的患者常常表现出根本不同的临床特征。基因型和表型之间的这种不一致在全脑前畸形(HPE)的畸形谱中得到了说明。携带刺猬(SHH)的相同突变的家庭成员可以表现出各种面部特征,从小眼症到细微的中线不对称。这种家族内变异性可能是由于环境因素与基因突变共同作用而引起的,这些基因突变共同将SHH活性降低到临界阈值以下。我们进行了一系列实验以检验假说,即在胚胎发育的不连续时期修改SHH信号传导途径的活性可以解释HPE的表型谱。在颅面发育的关键时期,将禽类胚胎暴露于环巴胺会重现与HPE相关的缺陷。颅面畸形包括视力减退,面部发育不全和面部c裂,并不是c细胞过度凋亡的结果。相反,它们是由组织中心的分子重编程产生的,该中心的活动控制着中上脸的生长和图案。这些数据共同揭示了一种机制,通过该机制可以通过单个分子途径的暂时破坏来产生诸如HPE之类的疾病的可变表达。

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