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首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Expression of key retinoic acid modulating genes suggests active regulation during development and regeneration of the amphibian limb.
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Expression of key retinoic acid modulating genes suggests active regulation during development and regeneration of the amphibian limb.

机译:关键视黄酸调节基因的表达表明在两栖动物肢体发育和再生过程中的主动调节。

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We have previously shown differential regulation of components of the Retinoic acid (RA) pathway in Xenopus tadpole hindlimb regeneration. RA is thought to act as a morphogen, providing positional information during development and regeneration. We have investigated the regulation of genes involved in RA synthesis, catabolism, and binding in developing and regenerating Xenopus limbs. Our data indicate that RA is synthesised by Raldh2 in proximal cells during limb bud outgrowth. Furthermore, Cyp26b is expressed transiently in the progress zone of developing limbs and the blastema of regenerating limbs suggesting degradation of RA occurs in both processes. The RA-binding protein Crabp2 is also upregulated during regeneration. We summarise this data to predict the presence of evolving gradients of RA in the developing amphibian limb. Thus, RA from the stump cells could be responsible for the establishment of proximal-distal pattern during limb regeneration, as predicted by classical studies.
机译:我们以前已经显示了非洲爪蟾t后肢再生中视黄酸(RA)途径的成分的差异调节。 RA被认为是一种形态发生素,在发育和再生过程中提供位置信息。我们已经研究了参与RA合成,分解代谢以及在非洲爪蟾肢体发育和再生中结合的基因的调控。我们的数据表明,RA是在肢芽生长过程中由Raldh2在近端细胞中合成的。此外,Cyp26b在发育中的肢体的进展区和再生肢体的胚细胞中短暂表达,这表明RA的降解在这两个过程中均发生。 RA结合蛋白Crabp2在再生过程中也被上调。我们总结了这些数据,以预测正在发展的两栖动物肢体中RA的进化梯度的存在。因此,如经典研究所预测的,来自残端细胞的RA可能负责肢体再生期间近端至远端模式的建立。

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