视黄酸受体(RARs)的发育表达。

Pascal Dollé
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引用次数: 137

摘要

本文综述了维甲酸受体(RARs)和类维甲酸X或类维甲酸受体(RXRs)编码基因的发育表达特征。20多年前,在克隆小鼠Rar基因之后,在小鼠身上进行了第一次详细的表达研究。这些研究揭示了植入后发育所有阶段的复杂表达特征,一个受体基因(Rara)广泛表达,另外两个受体基因(Rarb和Rarg)在神经和非神经组织中具有高度区域化和/或细胞类型特异性表达。Rxr基因也有广泛的(Rxra, Rxrb)或高度受限的(Rxrg)表达模式。在斑马鱼和非洲爪鱼中进行的研究表明,Rar和Rxr基因(母鱼和合子鱼)在早期前原肠胚期表达。参与维甲酸合成的特定酶(视黄醇/视黄醛脱氢酶)或其分解代谢的触发酶(CYP26细胞色素p450)的最终表征,都表现出不同的表达模式,使我们更清楚地了解维甲酸信号在发育过程中调节的现象。功能研究涉及小鼠的靶向基因破坏,以及其他模型中的显性负受体表达等其他方法,已经确定了RARs和RXRs在许多发育器官系统中的特定作用,而不是部分冗余作用。这些多效性作用与受体表达模式的关系将在下文进行总结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Developmental expression of retinoic acid receptors (RARs).

Here, I review the developmental expression features of genes encoding the retinoic acid receptors (RARs) and the 'retinoid X' or rexinoid receptors (RXRs). The first detailed expression studies were performed in the mouse over two decades ago, following the cloning of the murine Rar genes. These studies revealed complex expression features at all stages of post-implantation development, one receptor gene (Rara) showing widespread expression, the two others (Rarb and Rarg) with highly regionalized and/or cell type-specific expression in both neural and non-neural tissues. Rxr genes also have either widespread (Rxra, Rxrb), or highly-restricted (Rxrg) expression patterns. Studies performed in zebrafish and Xenopus demonstrated expression of Rar and Rxr genes (both maternal and zygotic), at early pre-gastrulation stages. The eventual characterization of specific enzymes involved in the synthesis of retinoic acid (retinol/retinaldehyde dehydrogenases), or the triggering of its catabolism (CYP26 cytochrome P450s), all of them showing differential expression patterns, led to a clearer understanding of the phenomenons regulated by retinoic acid signaling during development. Functional studies involving targeted gene disruptions in the mouse, and additional approaches such as dominant negative receptor expression in other models, have pinpointed the specific, versus partly redundant, roles of the RARs and RXRs in many developing organ systems. These pleiotropic roles are summarized hereafter in relationship to the receptors' expression patterns.

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