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鸡胚肢体芽中细胞蛋白与视黄酸结合的空间分布。

Spatial distribution of cellular protein binding to retinoic acid in the chick limb bud.

作者信息

Maden M, Ong D E, Summerbell D, Chytil F

机构信息

Limb Development Group, National Institute for Medical Research, London, UK.

出版信息

Nature. 1988 Oct 20;335(6192):733-5. doi: 10.1038/335733a0.

Abstract

Retinoic acid may be the natural morphogen used to generate digit pattern in the chick limb bud. It has been proposed that retinoic acid acts by binding to a cellular retinoic acid-binding protein (CRABP) and then entering the nucleus to alter the pattern of gene activity. High-affinity receptors that bind both retinoic acid and DNA and are analogous to the steroid receptors have been identified. But the concentration of endogenous retinoic acid in the limb and the binding coefficient of the nuclear receptors indicate that they are saturated throughout the limb. Here we investigate the CRABP distribution in the developing chick limb bud. We find CRABP in the area of intense morphogenetic activity at the tip, with a differential distribution across the anteroposterior axis, the high point being at the anterior margin. Retinoic acid also forms a concentration gradient across the limb bud, but is highest on the posterior side. We propose that CRABP could be reducing the effective concentration of retinoic acid reaching the nucleus to a level appropriate for the differential regulation of gene transcription, providing a spatially modulated morphogenetic gradient of information for digit formation.

摘要

视黄酸可能是用于在鸡胚肢芽中生成指(趾)模式的天然形态发生素。有人提出,视黄酸通过与细胞视黄酸结合蛋白(CRABP)结合,然后进入细胞核来改变基因活性模式。已经鉴定出了既结合视黄酸又结合DNA且类似于类固醇受体的高亲和力受体。但是肢体内内源性视黄酸的浓度以及核受体的结合系数表明,它们在整个肢体中都处于饱和状态。在这里,我们研究了发育中的鸡胚肢芽中CRABP的分布。我们在肢芽尖端强烈形态发生活动的区域发现了CRABP,其在前-后轴上有差异分布,最高点位于前缘。视黄酸在肢芽上也形成了浓度梯度,但在后侧最高。我们提出,CRABP可能会将到达细胞核的视黄酸有效浓度降低到适合基因转录差异调节的水平,为指(趾)形成提供空间调节的形态发生信息梯度。

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