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Restricted Pax3 Deletion within the Neural Tube Results in Congenital Hydrocephalus

机译:先天性脑积水在神经管内限制Pax3删除

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摘要

Congenital hydrocephalus is a common birth-defect whose developmental origins are poorly understood. Pax3-null mutants show defects in myogenesis, neural tube closure, neural crest morphogenesis, and heart development that, consequently, results in embryonic lethality. Here we demonstrate that conditional deletion of the mouse Pax3 transcription factor results in fully-penetrant congenital obstructive hydrocephalus. To identify the role of Pax3 during cranial development, we deleted Pax3 within the neuroepithelium (via Pax7−Cre), in the neural crest (via P0-Cre), and in both the neuroepithelium and the neural crest (via Wnt1-Cre). Only conditional mutants generated using Pax7−Cre or Wnt1-Cre developed early onset congenital hydrocephalus due to stenosis of the third ventricle, suggesting that loss of neuroepithelial Pax3 is sufficient to disturb third ventricle morphogenesis. Dilation of lateral ventricles occurs as early as E14.5, and lineage-mapping revealed that the neuroepithelial cells in the conditional mutants are present, but fail to undergo normal differentiation at the stenotic site. Concomitant with a narrowing of the mutant third ventricle, we detected ectopic apoptosis, reduced proliferation, and abnormal β-catenin localization. Furthermore, consistent with the overlapping expression pattern of Pax3 and Pax7 in early cranial neuroepithelium, we demonstrated a combinatorial role, as compound Pax3/Pax7 heterozygotes display partially-penetrant congenital hydrocephalus. These murine data provide an experimental paradigm underpinning clinical observations of the presence of PAX3 mutations in some hydrocephalic patients.
机译:先天性脑积水是一种常见的出生缺陷,其发育起源尚不清楚。 Pax3-null突变体在肌发生,神经管闭合,神经c形态发生和心脏发育方面显示出缺陷,从而导致胚胎致死率。在这里,我们证明了小鼠Pax3转录因子的条件缺失导致完全穿透性先天性阻塞性脑积水。为了确定Pax3在颅骨发育过程中的作用,我们删除了神经上皮内的Pax3(通过Pax7 -Cre ),神经c(通过P0-Cre)以及神经上皮和神经rest (通过Wnt1-Cre)。仅使用Pax7 -Cre 或Wnt1-Cre产生的条件突变体由于第三心室狭窄而导致早发性先天性脑积水,提示神经上皮Pax3的丧失足以干扰第三心室的形态发生。侧脑室的扩张最早在E14.5发生,并且谱系映射显示条件突变体中存在神经上皮细胞,但未在狭窄部位进行正常分化。伴随着突变的第三脑室的缩小,我们检测到了异位凋亡,减少的增殖和异常的β-catenin定位。此外,与Pax3和Pax7在早期颅神经上皮细胞中的重叠表达模式一致,我们证明了其组合作用,因为复合Pax3 / Pax7杂合子显示部分穿透性先天性脑积水。这些鼠类数据提供了实验范例,支持了某些脑积水患者中PAX3突变的临床观察。

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