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Generation of an inducible RPE-specific Cre transgenic-mouse line

机译:产生一种诱导型RPE特异性CRE转基因小鼠线

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摘要

The retinal pigment epithelium (RPE) is an epithelial monolayer in the back of the vertebrate eye. RPE dysfunction is associated with retinal degeneration and blindness. In order to fully understand how dysregulation affects visual function, RPE-specific gene knockouts are indispensable. Since the currently available RPE-specific Cre recombinases show lack of specificity or poor recombination, we sought to generate an alternative. We generated a tamoxifen-inducible RPE-specific Cre transgenic mouse line under transcriptional control of an RPE-specific Tyrosinase enhancer. We characterized the Cre-mediated recombinant expression by crossing our RPE-Tyrosinase-CreErT2 mouse line with the tdTomato reporter line, Ai14. Detected fluorescence was quantified via high-content image analysis. Recombination was predominantly observed in the RPE and adjacent ciliary body. RPE flatmount preparations revealed a high level of recombination in adult mice (47.25-69.48%). Regional analysis of dorsal, ventral, nasal and temporal areas did not show significant changes in recombination. However, recombination was higher in the central RPE compared to the periphery. Higher levels of Cre-mediated recombinant expression was observed in embryonic RPE (~83%). Compared to other RPE-specific Cre transgenic mouse lines, this newly generated RPE-Tyrosinase-CreErT2 line shows a more uniform and higher level of recombination with the advantage to initiate recombination in both, prenatal and postnatal animals. This line can serve as a valuable tool for researches exploring the role of individual gene functions, in both developing and differentiated RPE.
机译:视网膜颜料上皮(RPE)是脊椎动物后面的上皮单层。 RPE功能障碍与视网膜变性和失明相关。为了充分了解如何对视觉功能影响如何影响视觉功能,RPE特异性基因敲除是必不可少的。由于目前可用的RPE特异性CRE重组酶显示出缺乏特异性或重组差,因此我们寻求替代品。在RPE特异性酪氨酸酶增强剂的转录控制下,我们在转录控制下产生了三种氧化诱导的RPE特异性CRE转基因小鼠线。通过将RPE-酪氨酸酶-Creert2小鼠线与TDTOMATO报告线AI14交叉,表征CRE介导的重组表达。通过高含量图像分析定量检测到的荧光。在RPE和相邻的睫状体中主要观察到重组。 RPE FlatMount制剂显示成人小鼠中高水平的重组(47.25-69.48%)。背部,腹侧,鼻腔和颞区区域的区域分析并未显示重组的显着变化。然而,与周边相比,中央RPE的重组较高。在胚胎RPE(〜83%)中观察到更高水平的CRE介导的重组表达。与其他RPE特异性CRE转基因小鼠线相比,这种新产生的RPE-酪氨酸酶-Creert2线显示出更均匀且更高水平的重组,其优点是引发两种产前和产前动物的重组。这条线可以作为研究探索单个基因功能的作用的有价值的工具,在显影和分化的RPE中。

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