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视黄酸调节鸡视网膜中背腹向地形引导分子的表达。

Retinoic acid regulates the expression of dorsoventral topographic guidance molecules in the chick retina.

作者信息

Sen Jonaki, Harpavat Sanjiv, Peters Maureen A, Cepko Constance L

机构信息

Department of Genetics and Howard Hughes Medical Institute, Harvard Medical School, 77 Avenue Louis Pasteur, Boston, MA 02115, USA.

出版信息

Development. 2005 Dec;132(23):5147-59. doi: 10.1242/dev.02100. Epub 2005 Oct 26.

Abstract

Asymmetric expression of several genes in the early eye anlagen is required for the dorsoventral (DV) and anteroposterior (AP) patterning of the retina. Some of these early patterning genes play a role in determining the graded expression of molecules that are needed to form the retinotectal map. The polarized expression of retinoic acid synthesizing and degrading enzymes along the DV axis in the retina leads to several zones of varied retinoic acid (RA) activity. This is suggestive of RA playing a role in DV patterning of the retina. A dominant-negative form of the retinoic acid receptor alpha (DNhRARalpha) was expressed in the chick retina to block RA activity. RA signaling was found to play a role in regulating the expression of EphB2, EphB3 and ephrin B2, three molecules whose graded expression in the retina along the DV axis is important for establishing the correct retinotectal map. Blocking RA signaling by misexpression of a RA degrading enzyme, Cyp26A1 recapitulated some but not all the effects of DNhRARalpha. It also was found that Vax, a ventrally expressed transcription factor that regulates the expression of the EphB and ephrin B molecules, functions upstream of, or in parallel to, RA. Expression of DNhRARalpha led to increased levels of RA-synthesizing enzymes and loss of RA-degrading enzymes. Activation of such compensatory mechanisms when RA activity is blocked suggests that RA homeostasis is very strictly regulated in the retina.

摘要

视网膜背腹(DV)和前后(AP)模式形成需要早期眼原基中几个基因的不对称表达。这些早期模式形成基因中的一些在决定形成视网膜-脑顶盖图谱所需分子的梯度表达中发挥作用。视网膜中视黄酸合成和降解酶沿DV轴的极化表达导致了几个视黄酸(RA)活性不同的区域。这表明RA在视网膜的DV模式形成中发挥作用。在鸡视网膜中表达视黄酸受体α的显性负性形式(DNhRARα)以阻断RA活性。发现RA信号传导在调节EphB2、EphB3和ephrin B2的表达中起作用,这三种分子在视网膜中沿DV轴的梯度表达对于建立正确的视网膜-脑顶盖图谱很重要。通过错误表达RA降解酶Cyp26A1阻断RA信号传导可重现DNhRARα的部分而非全部效应。还发现Vax是一种在腹侧表达的转录因子,可调节EphB和ephrin B分子的表达,其在RA的上游或与之平行发挥作用。DNhRARα的表达导致RA合成酶水平升高和RA降解酶缺失。当RA活性被阻断时这种补偿机制的激活表明视网膜中RA稳态受到非常严格的调节。

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