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Otx 同源结构域蛋白在头部发育中的遗传和分子作用。

Genetic and molecular roles of Otx homeodomain proteins in head development.

作者信息

Acampora D, Gulisano M, Simeone A

机构信息

International Institute of Genetics and Biophysics, CNR, Via G. Marconi 12, 80125, Naples, Italy.

出版信息

Gene. 2000 Apr 4;246(1-2):23-35. doi: 10.1016/s0378-1119(00)00070-6.

Abstract

Insights into the molecular mechanisms underlying neural development in vertebrates come from the cloning and the functional analysis of genes which are involved in the molecular pathways leading to neural induction, tissue specification and regionalization of the brain. Among them, transcription factors belonging to the orthodenticle family (Otx1, Otx2) play an important role during early and later events required for proper brain development. To better understand their functions, several mouse mutants have been generated by homologous recombination. Their analysis clearly indicates that Otx1 is involved in corticogenesis, sense organ development and pituitary functions, while Otx2 is necessary earlier in development, for the correct anterior neural plate specification and organisation of the primitive streak. A molecular mechanism depending on a precise threshold of OTX proteins is necessary for the correct positioning of the isthmic region and for anterior brain patterning. Finally, vertebrate Otx genes share functional equivalence with the Drosophila homologue otd, indicating that the genetic mechanisms underlying pattern formation in insect and mammalian brain development are evolutionarily conserved.

摘要

对脊椎动物神经发育潜在分子机制的深入了解来自于对参与神经诱导、组织特化和脑区区域化分子途径的基因进行克隆和功能分析。其中,属于正齿科家族的转录因子(Otx1、Otx2)在正常脑发育所需的早期和后期事件中发挥重要作用。为了更好地理解它们的功能,通过同源重组产生了几种小鼠突变体。对它们的分析清楚地表明,Otx1参与皮质发生、感觉器官发育和垂体功能,而Otx2在发育早期对于正确的前神经板特化和原条的组织是必需的。一种依赖于OTX蛋白精确阈值的分子机制对于峡部区域的正确定位和前脑模式形成是必要的。最后,脊椎动物的Otx基因与果蝇同源物otd具有功能等效性,这表明昆虫和哺乳动物脑发育中模式形成的遗传机制在进化上是保守的。

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