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Knockin of Cre Gene at Ins2 Locus Reveals No Cre Activity in Mouse Hypothalamic Neurons

机译:INS2基因座的CRE基因Knockin揭示了小鼠下丘脑神经元中的CRE活性

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The recombination efficiency and cell specificity of Cre driver lines are critical for exploring pancreatic β cell biology with the Cre/LoxP approach. Some commonly used Cre lines are based on the short Ins2 promoter fragment and show recombination activity in hypothalamic neurons; however, whether this stems from endogenous Ins2 promoter activity remains controversial. In this study, we generated Ins2-Cre knockin mice with a targeted insertion of IRES-Cre at the Ins2 locus and demonstrated with a cell lineage tracing study that the Ins2 gene is not transcriptionally active in the hypothalamus. The Ins2-Cre driver line displayed robust Cre expression and activity in pancreatic β cells without significant alterations in insulin expression. In the brain, Cre activity was mainly restricted to the choroid plexus, without significant recombination detected in the hippocampus or hypothalamus by the LacZ or fluorescent tdTomato reporters. Furthermore, Ins2-Cre mice exhibited normal glucose tolerance and insulin secretion upon glucose stimulation in vivo . In conclusion, this Ins2-Cre driver line allowed high-fidelity detection of endogenous Ins2 promoter activity in vivo , and the negative activity in the hypothalamus demonstrated that this system is a promising alternative tool for studying β cell biology.
机译:CRE驱动线的重组效率和细胞特异性对于探索CRE / LOXP方法探索胰腺β细胞生物至关重要。一些常用的CRE系基于短INS2启动子片段,并显示下丘脑神经元的重组活性;然而,这是否源于内源性INS2启动子活性仍存在争议。在这项研究中,我们在Ins2基因座中产生了Ins2-Cre Knockin小鼠,并在INS2基因座上瞄准插入IRES-CRE,并用细胞谱系追踪研究证明,即INS2基因在下丘脑中没有转录活性。 INS2-CRE驱动线在胰岛素表达中显示出胰腺β细胞中的稳健CRE表达和活性,而无明显改变胰岛素表达。在大脑中,CRE活性主要限于脉络膜丛,而没有LacZ或荧光Tdtomato记者在海马或下丘脑中检测到的显着重组。此外,INS2-CRE小鼠在体内葡萄糖刺激时表现出正常的葡萄糖耐量和胰岛素分泌。总之,该INS2-CRE驱动线允许体内内源性INS2启动子活性的高保真检测,下丘脑中的阴性活性证明了该系统是研究β细胞生物学的有希望的替代工具。

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