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视黄酸信号在鸡胚肢体早期发育过程中是必需的。

Retinoic acid signaling is required during early chick limb development.

作者信息

Helms J A, Kim C H, Eichele G, Thaller C

机构信息

Department of Otorhinolaryngology, Baylor College of Medicine, Houston TX 77030, USA.

出版信息

Development. 1996 May;122(5):1385-94. doi: 10.1242/dev.122.5.1385.

Abstract

In the chick limb bud, the zone of polarizing activity controls limb patterning along the anteroposterior and proximodistal axes. Since retinoic acid can induce ectopic polarizing activity, we examined whether this molecule plays a role in the establishment of the endogenous zone of polarizing activity. Grafts of wing bud mesenchyme treated with physiologic doses of retinoic acid had weak polarizing activity but inclusion of a retinoic acid-exposed apical ectodermal ridge or of prospective wing bud ectoderm evoked strong polarizing activity. Likewise, polarizing activity of prospective wing mesenchyme was markedly enhanced by co-grafting either a retinoic acid-exposed apical ectodermal ridge or ectoderm from the wing region. This equivalence of ectoderm-mesenchyme interactions required for the establishment of polarizing activity in retinoic acid-treated wing buds and in prospective wing tissue, suggests a role of retinoic acid in the establishment of the zone of polarizing activity. We found that prospective wing bud tissue is a high-point of retinoic acid synthesis. Furthermore, retinoid receptor-specific antagonists blocked limb morphogenesis and down-regulated a polarizing signal, sonic hedgehog. Limb agenesis was reversed when antagonist-exposed wing buds were treated with retinoic acid. Our results demonstrate a role of retinoic acid in the establishment of the endogenous zone of polarizing activity.

摘要

在鸡胚肢体芽中,极化活性区控制着肢体沿前后轴和近远轴的模式形成。由于视黄酸可诱导异位极化活性,我们研究了该分子在建立内源性极化活性区过程中是否发挥作用。用生理剂量视黄酸处理的翼芽间充质移植具有较弱的极化活性,但加入经视黄酸处理的顶端外胚层嵴或预期的翼芽外胚层可诱发较强的极化活性。同样,通过共同移植经视黄酸处理的顶端外胚层嵴或翼区的外胚层,预期翼间充质的极化活性明显增强。在视黄酸处理的翼芽和预期翼组织中建立极化活性所需的外胚层 - 间充质相互作用的这种等效性,提示视黄酸在极化活性区建立过程中发挥作用。我们发现预期的翼芽组织是视黄酸合成的一个高峰。此外,类视黄醇受体特异性拮抗剂阻断肢体形态发生并下调极化信号——音猬因子。当用视黄酸处理经拮抗剂处理的翼芽时,肢体发育不全得以逆转。我们的结果证明视黄酸在建立内源性极化活性区中发挥作用。

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