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简短报告:Musashi1-eGFP小鼠,一种用于差异分离肠道干细胞群体的新工具。

Brief report: musashi1-eGFP mice, a new tool for differential isolation of the intestinal stem cell populations.

作者信息

Maria Cambuli Francesca, Rezza Amélie, Nadjar Julien, Plateroti Michelina

机构信息

Centre de Génétique et de Physiologie Moléculaire et Cellulaire, Université Claude Bernard, Lyon 1, France.

出版信息

Stem Cells. 2013 Oct;31(10):2273-8. doi: 10.1002/stem.1428.

Abstract

The intestinal epithelium self-renews rapidly and continuously throughout life, due to the presence of crypt stem cells. Two pools of these cells have been identified in the small intestine, which differ in position ("+4" or the bottom of the crypts), expression of specific markers (Bmi1/mTert or Lgr5/Ascl2), and cell cycle characteristics. Interestingly, the RNA-binding protein Musashi1 is expressed in both populations and therefore a potential marker for both stem cell types. In order to locate, isolate, and study Musashi1-expressing cells within the intestinal epithelium, we generated transgenic mice expressing GFP fluorescent protein under the control of a 7-kb Msi1 promoter. The expression pattern of GFP in the intestinal crypts of both small and large intestines completely overlapped that of Musashi1, validating our model. By using fluorescence-activated cell sorting, cellular, and molecular analyses, we showed that GFP-positive Msi1-expressing cells are divided into two major pools corresponding to the Lgr5- and mTert-expressing stem cells. Interestingly, monitoring the cell cycle activity of the two sorted populations reveals that they are both actively cycling, although differences in cell cycle length were confirmed. Altogether, our new reporter mouse model based upon Musashi1 expression is a useful tool to isolate and study stem cells of the intestinal epithelium. Moreover, these mice uniquely enable the concomitant study of two pools of intestinal stem cells within the same animal model.

摘要

由于存在隐窝干细胞,肠道上皮在整个生命过程中迅速且持续地自我更新。在小肠中已鉴定出两类这样的细胞,它们在位置(“+4”或隐窝底部)、特定标志物的表达(Bmi1/mTert或Lgr5/Ascl2)以及细胞周期特征方面存在差异。有趣的是,RNA结合蛋白Musashi1在这两类细胞中均有表达,因此它可能是这两种干细胞类型的标志物。为了在肠道上皮内定位、分离和研究表达Musashi1的细胞,我们构建了在7 kb Msi1启动子控制下表达绿色荧光蛋白(GFP)的转基因小鼠。GFP在小肠和大肠隐窝中的表达模式与Musashi1的表达模式完全重叠,验证了我们的模型。通过使用荧光激活细胞分选、细胞和分子分析,我们发现表达GFP的Msi1阳性细胞分为两个主要群体,分别对应于表达Lgr5和mTert的干细胞。有趣的是,监测这两个分选群体的细胞周期活性发现,它们都在活跃地进行细胞周期循环,尽管细胞周期长度存在差异得到了证实。总之,我们基于Musashi1表达构建的新型报告基因小鼠模型是分离和研究肠道上皮干细胞的有用工具。此外,这些小鼠能够在同一动物模型中同时研究两类肠道干细胞。

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