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Generation and Characterization of Transgenic Mice Expressing Mouse Ins1 Promoter for Pancreatic beta-Cell-Specific Gene Overexpression and Knockout

机译:胰腺β细胞特异性基因过表达和基因敲除的小鼠Ins1启动子的转基因小鼠的产生和表征。

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The technologies for pancreatic beta-cell-specific gene overexpression or knockout are fundamental for investigations of functional genes in vivo. Here we generated the Ins1-Cre-Dsred and Ins1-rtTA mouse models, which expressed the Cre recombinase or reverse tetracycline regulatable transactivator (rtTA) without hGH minigene under the control of mouse Ins1 promoter. Our data showed that the Cre-mediated recombination and rtTA-mediated activation could be efficiently detected at embryonic day 13.5 when these models were crossed with the reporter mice (ROSA(mT/mG) or tetO-HIST1H2BJ/GFP). The Cre and rtTA expression was restricted to beta-cells without leakage in the brain and other tissues. Moreover, both the transgenic lines showed normal glucose tolerance and insulin secretion. These results suggested that the Ins1-Cre-Dsred and Ins1-rtTA mice could be used to knock out or overexpress target genes in embryos and adults to facilitate beta-cell researches.
机译:胰腺β细胞特异性基因过度表达或敲除技术是体内功能基因研究的基础。在这里,我们生成了Ins1-Cre-Dsred和Ins1-rtTA小鼠模型,它们表达了在小鼠Ins1启动子控制下没有hGH小基因的Cre重组酶或反向四环素可调节反式激活因子(rtTA)。我们的数据表明,当这些模型与报告基因小鼠(ROSA(mT / mG)或tetO-HIST1H2BJ / GFP)杂交时,可以在胚胎第13.5天有效地检测到Cre介导的重组和rtTA介导的激活。 Cre和rtTA的表达仅限于β细胞,而不会在大脑和其他组织中渗漏。此外,两个转基因品系均显示正常的葡萄糖耐量和胰岛素分泌。这些结果表明,Ins1-Cre-Dsred和Ins1-rtTA小鼠可用于敲除或过度表达胚胎和成年小鼠中的靶基因,以促进β细胞的研究。

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