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一种新型的可诱导元件存在于Rpx/Hesx1同源盒基因的调控区域,该元件在与拉特克囊接触时被激活。

A novel inducible element, activated by contact with Rathke's pouch, is present in the regulatory region of the Rpx/Hesx1 homeobox gene.

作者信息

Hermesz Edit, Williams-Simons Lisa, Mahon Kathleen A

机构信息

Laboratory of Mammalian Genes and Development, NICHD, NIH, Bethesda, MD 20892, USA.

出版信息

Dev Biol. 2003 Aug 1;260(1):68-78. doi: 10.1016/s0012-1606(03)00218-5.

Abstract

Reciprocal inductive interactions are postulated to play a role in the determination and differentiation of the pituitary gland and the ventral hypothalamus. The homeobox gene Rpx/Hesxl is expressed during gastrulation in the anterior endoderm, prechordal plate, and the prospective cephalic neural plate, and at later stages of development in Rathke's pouch, the primordium of the pituitary. We have defined the regulatory elements necessary for proper spatial and temporal expression during development in transgenic mice using lacZ reporter genes. Proper spatial and temporal expression in the anterior endoderm prechordal plate and anterior neural plate can be recapitulated with as little as 568 bp of upstream sequence and intragenic sequence containing the first exon and intron. Late-stage expression in Rathke's pouch requires additional negative and positive regulatory elements. Interestingly, deletion analysis uncovered an element that directs transgene expression to a region of the hypothalamus that lies in direct contact with Rathke's pouch. In vitro tissue recombination experiments have established that this expression is induced by contact with the pouch. We propose that this element may be present in other genes that normally respond to signals emanating from the pouch during the development of the hypothalamic-pituitary axis. The Rpx-lacZ transgenic mice provide a novel model system for the molecular dissection of inductive cell signaling during pituitary development.

摘要

相互诱导作用被认为在垂体和腹侧下丘脑的决定和分化过程中发挥作用。同源异型框基因Rpx/Hesxl在原肠胚形成期于前端内胚层、脊索前板和预期的头侧神经板中表达,在发育后期于垂体原基拉特克囊(Rathke's pouch)中表达。我们利用lacZ报告基因在转基因小鼠中确定了发育过程中正常时空表达所需的调控元件。仅568 bp的上游序列以及包含第一个外显子和内含子的基因内序列就能重现前端内胚层、脊索前板和前神经板中的正常时空表达。拉特克囊中晚期表达需要额外的负性和正性调控元件。有趣的是,缺失分析发现了一个元件,它可将转基因表达引导至与拉特克囊直接接触的下丘脑区域。体外组织重组实验证实,这种表达是由与囊的接触诱导的。我们推测,在丘脑 - 垂体轴发育过程中,该元件可能存在于其他通常对来自囊的信号作出反应的基因中。Rpx - lacZ转基因小鼠为垂体发育过程中诱导性细胞信号传导的分子剖析提供了一个新的模型系统。

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