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重新审视维甲酸信号在骨骼发育中的作用。

Revisiting the role of retinoid signaling in skeletal development.

作者信息

Weston Andrea D, Hoffman Lisa M, Underhill T Michael

机构信息

Institute for Systems Biology, Seattle, Washington, USA.

出版信息

Birth Defects Res C Embryo Today. 2003 May;69(2):156-73. doi: 10.1002/bdrc.10010.

Abstract

Several years ago, it was discovered that an imbalance of vitamin A during embryonic development has dramatic teratogenic effects. These effects have since been attributed to vitamin A's most active metabolite, retinoic acid (RA), which itself profoundly influences the development of multiple organs including the skeleton. After decades of study, researchers are still uncovering the molecular basis whereby retinoids regulate skeletal development. Retinoid signaling involves several components, from the enzymes that control the synthesis and degradation of RA, to the cytoplasmic RA-binding proteins, and the nuclear receptors that modulate gene transcription. As new functions for each component continue to be discovered, their developmental roles appear increasingly complex. Interestingly, each component has been implicated in skeletal development. Moreover, retinoid signaling comes into play at distinct stages throughout the developmental sequence of skeletogenesis, highlighting a fundamental role for this pathway in forming the adult skeleton. Consistent with these roles, manipulation of the retinoid signaling pathway significantly affects the expression of the skeletogenic master regulatory factors, Sox9 and Cbfa1. In addition to the fact that we now have a greater understanding of the retinoid signaling pathway on a molecular level, much more information is now available to begin placing retinoid signaling within the context of other factors that regulate skeletogenesis. Here we review these recent advances and describe our current understanding of how retinoid signaling functions to coordinate skeletal development. We also discuss future directions and clinical implications in this field.

摘要

几年前,人们发现胚胎发育过程中维生素A的失衡具有显著的致畸作用。此后,这些作用被归因于维生素A最活跃的代谢产物视黄酸(RA),视黄酸本身对包括骨骼在内的多个器官的发育有着深远影响。经过数十年的研究,研究人员仍在揭示类视黄醇调节骨骼发育的分子基础。类视黄醇信号传导涉及多个组分,从控制RA合成和降解的酶,到细胞质RA结合蛋白,以及调节基因转录的核受体。随着每个组分的新功能不断被发现,它们在发育中的作用似乎越来越复杂。有趣的是,每个组分都与骨骼发育有关。此外,类视黄醇信号传导在骨骼发生发育序列的不同阶段发挥作用,突显了该信号通路在形成成人骨骼中的重要作用。与这些作用一致,对类视黄醇信号通路进行调控会显著影响骨骼生成主要调控因子Sox9和Cbfa1的表达。除了我们现在在分子水平上对类视黄醇信号通路有了更深入的了解之外,现在还有更多信息可用于将类视黄醇信号传导置于其他调节骨骼发生的因子的背景中。在此,我们综述这些最新进展,并描述我们目前对类视黄醇信号传导如何协调骨骼发育的理解。我们还讨论了该领域的未来方向和临床意义。

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