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首页> 外文期刊>Journal of cell biology >Identification of brain-derived neurotrophic factor promoter regions mediating tissue-specific, axotomy-, and neuronal activity-induced expression in transgenic mice.
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Identification of brain-derived neurotrophic factor promoter regions mediating tissue-specific, axotomy-, and neuronal activity-induced expression in transgenic mice.

机译:鉴定介导组织特异性,轴突切开和神经元活性诱导的转基因小鼠表达的脑源性神经营养因子启动子区域。

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The structure of rat brain-derived neurotrophic factor (BDNF) gene is complex; four 5' exons are linked to separate promoters and one 3' exon is encoding the BDNF protein. To analyze the relative importance of the regulatory regions in vivo, we have generated transgenic mice with six different promoter constructs of the BDNF gene fused to the chloramphenicol acetyl transferase reporter gene. High level and neuronal expression of the reporter gene, that in many respects recapitulated BDNF gene expression, was achieved by using 9 kb of genomic sequences covering the promoter regions that lie adjacent to each other in the genome (promoters I and II and promoters III and IV, respectively) and by including sequences of BDNF intron-exon splice junctions and 3' untranslated region in the constructs. The genomic regions responsible for the in vivo upregulation of BDNF expression in the axotomized sciatic nerve and in the brain after kainic acid-induced seizures and KCl-induced spreading depression were mapped. These data show that regulation of the different aspects of BDNF expression is controlled by different regions in vivo, and they suggest that these promoter constructs may be useful for targeted expression of heterologous genes to specific regions of the central and peripheral nervous systems in an inducible manner.
机译:大鼠脑源性神经营养因子(BDNF)基因的结构复杂;四个5'外显子与单独的启动子相连,一个3'外显子编码BDNF蛋白。为了分析体内调节区域的相对重要性,我们已经产生了转基因小鼠,该小鼠具有六种不同的BDNF基因启动子构建体,并与氯霉素乙酰基转移酶报道基因融合。报告基因的高水平和神经元表达,在许多方面概括了BDNF基因表达,是通过使用9 kb的基因组序列实现的,该序列覆盖了基因组中彼此相邻的启动子区域(启动子I和II和启动子III和启动子III和IV),并通过在构建体中包含BDNF内含子-外显子剪接点和3'非翻译区的序列。绘制了在海藻酸诱导的癫痫发作和KCl引起的扩散性抑郁症后,在轴突切除的坐骨神经和大脑中负责BDNF表达体内上调的基因组区域。这些数据表明对BDNF表达不同方面的调节受体内不同区域的控制,并且它们表明这些启动子构建体可用于以诱导方式将异源基因靶向表达至中枢和周围神经系统的特定区域。

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