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BMP antagonism by noggin is required in presumptive notochord cells for mammalian foregut morphogenesis

机译:推测的脊索细胞在哺乳动物的前肠形态发生中需要由头蛋白拮抗BMP

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Esophageal atresia with tracheoesophageal fistula (EA/TEF) is a serious human birth defect, in which the esophagus ends before reaching the stomach, and is aberrantly connected with the trachea. Several mouse models of EA/TEF have recently demonstrated that proper dorsal/ventral (D/V) patterning of the primitive anterior foregut endoderm is essential for correct compartmentalization of the trachea and esophagus. Here we elucidate the pathogenic mechanisms underlying the EA/TEF that occurs in mice lacking the BMP antagonist Noggin, which display correct dorsal/ventral patterning. To clarify the mechanism of this malformation, we use spatiotemporal manipulation of Noggin and BMP receptor 1A conditional alleles during foregut development. Surprisingly, we find that the expression of Noggin in the compartmentalizing endoderm is not required to generate distinct tracheal and esophageal tubes. Instead, we show that Noggin and BMP signaling attenuation are required in the early notochord to correctly resolve notochord cells from the dorsal foregut endoderm, which in turn, appears to be a prerequisite for foregut compartmentalization. Collectively, our findings support an emerging model for a mechanism underlying EA/TEF in which impaired notochord resolution from the early endoderm causes the foregut to be hypo-cellular just prior to the critical period of compartmentalization. Our further characterizations suggest that Noggin may regulate a cell rearrangement process that involves reciprocal E-cadherin and Zeb1 expression in the resolving notochord cells.
机译:食管闭锁伴气管食管瘘(EA / TEF)是一种严重的人类先天性缺陷,食管在到达胃部之前就已经结束,并且与气管异常连接。 EA / TEF的几种小鼠模型最近证明,原始前肠内胚层的正确背/腹(D / V)模式对于正确分隔气管和食道至关重要。在这里,我们阐明了在缺乏BMP拮抗剂Noggin的小鼠中发生的EA / TEF潜在的致病机制,这些小鼠显示出正确的背/腹模式。为了阐明这种畸形的机制,我们在前肠发育过程中使用时空操纵的Noggin和BMP受体1A条件等位基因。出乎意料的是,我们发现隔室化内胚层中的头蛋白表达不需要产生独特的气管和食道管。取而代之的是,我们表明在早期的脊索动物中需要Noggin和BMP信号衰减才能正确地从背侧前肠内胚层中分离出脊索动物细胞,而这反过来似乎是进行前肠分隔的前提。总的来说,我们的发现支持一种新兴的EA / TEF机制模型,在该模型中,早于内胚层的脊索分辨力降低导致前肠在隔室的关键时期之前就处于细胞下垂状态。我们的进一步表征表明,Noggin可能调节细胞重排过程,该过程涉及在分离的脊索细胞中相互表达的E-钙粘蛋白和Zeb1表达。

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