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首页> 外文期刊>Journal of molecular medicine: Official organ of the "Gesellschaft Deutscher Naturforscher und Arzte." >The Tet-On system in transgenic mice: inhibition of the mouse pdx-1 gene activity by antisense RNA expression in pancreatic beta-cells.
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The Tet-On system in transgenic mice: inhibition of the mouse pdx-1 gene activity by antisense RNA expression in pancreatic beta-cells.

机译:转基因小鼠中的Tet-On系统:通过胰腺β细胞中反义RNA表达抑制小鼠pdx-1基因的活性。

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摘要

To elucidate the function of pancreas duodenal homeobox 1 (PDX-1; insulin promoter factor 1/somatostatin transcription factor 1/islet duodenum homeobox 1/insulin upstream factor 1) in differentiated beta-cells of adult animals we generated transgenic mice using the Tet-On system. Inducible expression of an antisense RNA should down-regulate the PDX-1 protein. The selective and continuous inhibition of PDX-1 gene expression should impair the expression of PDX-1 dependent beta-cell specific genes. A gene switch such as the Tet-On system provides a powerful tool to analyze eukaryotic gene expression and function in transgenic mice. The original Tet system contained two transcriptional units, transactivator and target of control, on two plasmids. We combined the two transcriptional units on a single DNA molecule. The transactivator was placed under control of the mouse insulin promoter. The tet responsive element, driving the gene of interest, was inserted further down-stream into the same vector. The tet regulatory system in this approach permitted a tissue-specific and a doxycycline-inducible control of PDX-1 expression in transgenic mice. The expression of glucose transporter 2 and glucokinase was markedly reduced in dox-treated transgenic mice. In contrast, the number of insulin- and amylin-expressing cells was only slightly decreased, whereas the expression of glucagon was increased distinctly in islets of these mice. Furthermore, the exposure to doxycycline resulted in a progressive impairment of glucose tolerance. The characterization of our transgenic mouse model demonstrates the suitability of the Tet-On system for analyzing physiological consequences emerging from a stepwise decrease in a given protein. Using this system we confirmed the essential role of PDX-1 in pancreatic islets and demonstrated that an antisense-mediated PDX-1 deficiency provokes a beta-cell dysfunction.
机译:为阐明胰腺十二指肠同源盒1(PDX-1;胰岛素启动子因子1 /生长抑素转录因子1 /胰岛十二指肠同源盒1 /胰岛素上游因子1)在成年动物分化的β细胞中的功能,我们使用Tet-在系统上。反义RNA的诱导表达应下调PDX-1蛋白。对PDX-1基因表达的选择性和连续抑制应削弱PDX-1依赖的β细胞特异性基因的表达。 Tet-On系统等基因开关为分析转基因小鼠中的真核基因表达和功能提供了强大的工具。原始的Tet系统在两个质粒上包含两个转录单元,反式激活因子和控制靶。我们将两个转录单位结合在一个DNA分子上。将反式激活剂置于小鼠胰岛素启动子的控制之下。驱动目标基因的tet响应元件进一步在下游插入同一载体。这种方法的tet调节系统允许在转基因小鼠中组织特异性和强力霉素诱导的PDX-1表达控制。在经dox处理的转基因小鼠中,葡萄糖转运蛋白2和葡萄糖激酶的表达显着降低。相反,在这些小鼠的胰岛中,表达胰岛素和胰岛淀粉样多肽的细胞的数量仅略微减少,而胰高血糖素的表达则明显增加。此外,暴露于强力霉素会导致葡萄糖耐量的逐步下降。我们的转基因小鼠模型的表征证明了Tet-On系统适用于分析因给定蛋白质逐步降低而产生的生理后果。使用该系统,我们证实了PDX-1在胰岛中的重要作用,并证明了反义介导的PDX-1缺乏会引起β细胞功能障碍。

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