Four-jointed is a type II transmembrane protein that is thought to be cleaved to give rise to a secreted protein. In Drosophila, four-jointed controls outgrowth, vein patterning, and bristle polarity in the developing limb together with the polarity of the ommatidia in the developing eye. In Drosophila and mice, Fj is regulated by notch signaling. Here, we have determined the expression of the chick four-jointed (fjx) homologue during embryonic development. We show that fjx is expressed in the limb bud; facial primordia; the proliferating zone of the lens, feather buds, the neural tube; and neural crest derivatives such as the dorsal root ganglia. Analysis of the fjx expression in the developing limb bud showed that initially fjx is expressed throughout the limb bud, but as the limb develops, highest levels of fjx transcripts are found distally. However, by stage 27, fjx expression is predominantly found in the central core of the limb bud. Finally, fjx expression becomes confined to the developing tendons, ligaments, articular cartilage, and arteries but not the veins. Comparison with scleraxis (scx), a marker of tendons and ligaments, revealed that they are coexpressed in the majority of tendons but that fjx is expressed after scx, when the tendons have begun to differentiate. These data suggest that fjx has two roles during limb development: the first controlling outgrowth and the second tissue differentiation.

译文

四节蛋白是一种II型跨膜蛋白,被认为被切割以产生分泌蛋白。在果蝇中,四关节控制发育中的肢体的生长,静脉模式和刚毛极性,以及发育中的眼眼的极性。在果蝇和小鼠中,Fj受notch信号调节。在这里,我们已经确定了雏鸡四关节 (fjx) 同源物在胚胎发育过程中的表达。我们显示fjx在肢芽中表达; 面部原基; 晶状体,羽毛芽,神经管的增殖区; 和神经嵴衍生物,例如背根神经节。对发育中的肢芽中fjx表达的分析表明,最初fjx在整个肢芽中表达,但是随着肢体的发育,远端发现了最高水平的fjx转录本。然而,到第27阶段,fjx表达主要出现在肢芽的中央核心。最后,fjx的表达仅限于发育中的肌腱,韧带,关节软骨和动脉,而不是静脉。与肌腱和韧带的标记物scleaxis (scx) 的比较显示,它们在大多数肌腱中共同表达,但当肌腱开始分化时,fjx在scx之后表达。这些数据表明,fjx在肢体发育过程中具有两个作用: 第一个控制性生长和第二个组织分化。

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