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首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Expression of the Celsr/flamingo homologue, c-fmi1, in the early avian embryo indicates a conserved role in neural tube closure and additional roles in asymmetry and somitogenesis.
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Expression of the Celsr/flamingo homologue, c-fmi1, in the early avian embryo indicates a conserved role in neural tube closure and additional roles in asymmetry and somitogenesis.

机译:Celsr /火烈鸟同系物c-fmi1在禽类早期胚胎中的表达表明其在神经管闭合中的保守作用以及在不对称和体发生中的其他作用。

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摘要

Flamingo is one of a core group of proteins that regulate planar cell polarity of epithelial structures within the Drosophila embryo while their vertebrate counterparts have been implicated in the coordination of convergent extension movements during gastrulation and in neural tube closure, suggesting that planar polarity mechanisms also function in these processes. Failure of neural tube closure is one of the most common human birth defects, and a murine flamingo (fmi) homologue, Celsr1/fmi-1, was identified as the defective gene in two mouse mutants exhibiting failure of closure 1 of the neural tube. This failure resulted in craniorachischisis in which the neural tube is open from the midbrain posteriorly. The avian embryo provides a tractable system to study neural tube closure. We have identified a chick Celsr1/fmi-1 orthologue, c-fmi1 and provide the first study of expression of an avian flamingo gene. We show that expression is highly dynamic in the early embryo and that c-fmi1 transcripts becomeenriched within the avian neural epithelium at the initiation of neural tube closure, suggesting a conserved function for Flamingo proteins in this process. Our data also suggest a role for c-fmi1 in myotome development.
机译:火烈鸟是调节果蝇胚胎内上皮结构的平面细胞极性的核心蛋白质之一,而其脊椎动物的对应分子则参与了胃形成和神经管闭合过程中融合性延伸运动的协调,这表明平面极性机制也起作用在这些过程中。神经管闭合失败是人类最常见的出生缺陷之一,在两个显示神经管闭合1失败的小鼠突变体中,鼠火烈鸟(fmi)同源物Celsr1 / fmi-1被鉴定为缺陷基因。该失败导致颅achi裂,其中神经管从中脑后部开放。禽胚胎为研究神经管闭合提供了一个易于处理的系统。我们已经鉴定出小鸡Celsr1 / fmi-1直系同源物c-fmi1,并提供了关于禽类火烈鸟基因表达的首次研究。我们显示在早期胚胎中表达是高度动态的,并且在神经管闭合开始时,c-fmi1转录物在禽神经上皮内变得富集,表明在此过程中火烈鸟蛋白的保守功能。我们的数据还暗示了c-fmi1在子宫肌瘤发育中的作用。

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