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利用转基因小鼠分析大脑中芳香化酶的时空调控

Analysis of spatiotemporal regulation of aromatase in the brain using transgenic mice.

作者信息

Harada Nobuhiro, Honda Shin-ichiro

机构信息

Department of Biochemistry, School of Medicine, Fujita Health University, Toyoake, Aichi 470-1192, Japan.

出版信息

J Steroid Biochem Mol Biol. 2005 May;95(1-5):49-55. doi: 10.1016/j.jsbmb.2005.04.003.

Abstract

Brain aromatase is widely distributed in the vertebrates, from fish to mammals, and plays important roles in functional reproductive behavior through production of estrogen as a neurosteroid. It is expressed only in the nerve cells of specific brain regions with a transient peak in the neonatal period when sexual behavior becomes organized, and therefore provides a good model system to study regulatory mechanism of cell-specific, brain region-specific, and developmental stage-specific expression. To elucidate spatiotemporal regulation of brain aromatase, we prepared transgenic mice carrying a reporter gene under the promoter of brain-specific exon 1f of the mouse aromatase gene. The reporter transgene carrying a 6.5 kb upstream region of the brain-specific promoter accurately reproduced the spatiotemporal expression patterns of aromatase in mouse brain, whereas transgenes carrying smaller fragments of the promoter showed ambiguous or inconsistent expression patterns. The binding sites of Aro-AI, Aro-AII, and Aro-B for nuclear factors were also identified in the proximal region of the exon 1f brain-specific promoter. Introduction of a mutation into the Aro-AII site in the reporter transgene carrying -6.5 kb promoter region of exon 1f caused complete alteration of the spatiotemporal expression pattern of the reporter gene in the transgenic mice. These results indicate that the -6.5 kb promoter region of exon 1f is the minimal essential element for brain-specific regulation, with both proximal and distal promoter regions required for accurate spatiotemporal expression of aromatase in the mouse brain.

摘要

脑芳香化酶广泛分布于从鱼类到哺乳动物的脊椎动物中,通过作为神经甾体的雌激素的产生在功能性生殖行为中发挥重要作用。它仅在特定脑区的神经细胞中表达,在性行为开始形成的新生期出现短暂峰值,因此为研究细胞特异性、脑区特异性和发育阶段特异性表达的调控机制提供了一个良好的模型系统。为了阐明脑芳香化酶的时空调控,我们制备了在小鼠芳香化酶基因脑特异性外显子1f启动子下携带报告基因的转基因小鼠。携带脑特异性启动子6.5 kb上游区域的报告转基因准确地重现了芳香化酶在小鼠脑中的时空表达模式,而携带启动子较小片段的转基因则显示出模糊或不一致的表达模式。在脑特异性外显子1f启动子的近端区域也鉴定出了核因子Aro-AI、Aro-AII和Aro-B的结合位点。在携带外显子1f -6.5 kb启动子区域的报告转基因中,将Aro-AII位点引入突变导致转基因小鼠中报告基因的时空表达模式完全改变。这些结果表明,外显子1f的-6.5 kb启动子区域是脑特异性调控的最小必需元件,近端和远端启动子区域对于芳香化酶在小鼠脑中的准确时空表达都是必需的。

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