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首页> 外文期刊>Development >Concerted involvement of Cdx/Hox genes and Wnt signaling in morphogenesis of the caudal neural tube and cloacal derivatives from the posterior growth zone.
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Concerted involvement of Cdx/Hox genes and Wnt signaling in morphogenesis of the caudal neural tube and cloacal derivatives from the posterior growth zone.

机译:Cdx / Hox基因和Wnt信号通路协同参与尾神经管和后生长区泄殖腔衍生物的形态发生。

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Decrease in Cdx dosage in an allelic series of mouse Cdx mutants leads to progressively more severe posterior vertebral defects. These defects are corrected by posterior gain of function of the Wnt effector Lef1. Precocious expression of Hox paralogous 13 genes also induces vertebral axis truncation by antagonizing Cdx function. We report here that the phenotypic similarity also applies to patterning of the caudal neural tube and uro-rectal tracts in Cdx and Wnt3a mutants, and in embryos precociously expressing Hox13 genes. Cdx2 inactivation after placentation leads to posterior defects, including incomplete uro-rectal septation. Compound mutants carrying one active Cdx2 allele in the Cdx4-null background (Cdx2/4), transgenic embryos precociously expressing Hox13 genes and a novel Wnt3a hypomorph mutant all manifest a comparable phenotype with similar uro-rectal defects. Phenotype and transcriptome analysis in early Cdx mutants, genetic rescue experiments and gene expression studies lead us to propose that Cdx transcription factors act via Wnt signaling during the laying down of uro-rectal mesoderm, and that they are operative in an early phase of these events, at the site of tissue progenitors in the posterior growth zone of the embryo. Cdx and Wnt mutations and premature Hox13 expression also cause similar neural dysmorphology, including ectopic neural structures that sometimes lead to neural tube splitting at caudal axial levels. These findings involve the Cdx genes, canonical Wnt signaling and the temporal control of posterior Hox gene expression in posterior morphogenesis in the different embryonic germ layers. They shed a new light on the etiology of the caudal dysplasia or caudal regression range of human congenital defects.
机译:等位基因系列的小鼠Cdx突变体中Cdx剂量的减少会导致逐渐严重的后椎骨缺损。这些缺陷可以通过Wnt效应子Lef1的后功能获得纠正。 Hox同源13基因的早熟表达还通过拮抗Cdx功能诱导椎轴截短。我们在这里报告,表型相似性也适用于Cdx和Wnt3a突变体,以及早熟表达Hox13基因的胚胎的尾神经管和尿道直肠的模式。胎盘植入后Cdx2失活导致后部缺陷,包括不完全的尿直肠分离。复合突变体在Cdx4-null背景(Cdx2 / 4)中携带一个活跃的Cdx2等位基因,早熟地表达Hox13基因的转基因胚和新型Wnt3a亚型突变体均表现出可比的表型,具有类似的尿直肠缺陷。早期Cdx突变体的表型和转录组分析,基因拯救实验和基因表达研究使我们提出,Cdx转录因子在尿直肠中胚层铺设过程中通过Wnt信号起作用,并且在这些事件的早期起作用,位于胚胎后生长区中的组织祖细胞部位。 Cdx和Wnt突变以及过早的Hox13表达也会引起类似的神经畸形,包括异位神经结构,有时会导致神经管在尾轴水平分裂。这些发现涉及Cdx基因,经典Wnt信号传导和不同胚胎胚层后形态发生中后Hox基因表达的时间控制。他们为人类先天性缺陷的尾部发育不良或尾部消退范围的病因学提供了新的思路。

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