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干细胞富集群体与短暂扩增细胞的转录谱分析。角膜缘和角膜上皮基底细胞的比较。

Transcriptional profiling of enriched populations of stem cells versus transient amplifying cells. A comparison of limbal and corneal epithelial basal cells.

作者信息

Zhou Mingyuan, Li Xin-min, Lavker Robert M

机构信息

Department of Dermatology, Feinberg School of Medicine, Chicago, Illinois 60611, USA.

出版信息

J Biol Chem. 2006 Jul 14;281(28):19600-9. doi: 10.1074/jbc.M600777200. Epub 2006 May 4.

Abstract

The basal layer of limbal and central corneal epithelium is enriched in stem cells and transient amplifying cells, respectively. This physical separation of stem and transient amplifying cells makes the limbal/corneal epithelium an exceptionally suitable system for isolating basal cells enriched in these two proliferative populations. Prior attempts to isolate epithelial stem cells used methods such as proteolytic tissue dissociation and cell sorting that could potentially alter their gene expression profile. Using laser capture microdissection, we were able to isolate resting limbal and corneal basal cells from frozen sections with minimal tissue processing, thereby improving the yield and quality of RNA. Analyses of RNA isolated from 300 limbal and corneal basal cells from eight mice revealed a set of approximately 100 genes that are differentially expressed in limbal cells versus corneal epithelial basal cells. Semiquantitative reverse transcription-PCR confirmed the up-regulation of three limbal and three corneal genes. LacZ identification of epiregulin from epiregulin-null mice and immunohistochemical staining of wild type mice confirmed that epiregulin, one of the limbal epithelium-enriched genes, was associated with the limbal epithelial basal cells. Within the limbal and corneal basal cells, we detected previously unknown genes that were differentially expressed in these two regions that contribute further to our understanding of the unique heterogeneity of these two closely related basal cell populations. Our findings indicate that we can obtain accurate gene expression profiles of the stem cell-enriched limbal basal cell population in their "natural" quiescent state.

摘要

角膜缘和中央角膜上皮的基底层分别富含干细胞和短暂增殖细胞。干细胞和短暂增殖细胞的这种物理分离使得角膜缘/角膜上皮成为分离富含这两种增殖细胞群的基底细胞的特别合适的系统。先前分离上皮干细胞的尝试使用了诸如蛋白水解组织解离和细胞分选等方法,这些方法可能会改变它们的基因表达谱。通过激光捕获显微切割,我们能够从冷冻切片中分离出静止的角膜缘和角膜基底细胞,同时将组织处理降至最低,从而提高RNA的产量和质量。对从八只小鼠的300个角膜缘和角膜基底细胞中分离出的RNA进行分析,发现了一组大约100个在角膜缘细胞和角膜上皮基底细胞中差异表达的基因。半定量逆转录-PCR证实了三个角膜缘基因和三个角膜基因的上调。来自表皮调节素基因敲除小鼠的表皮调节素的LacZ鉴定以及野生型小鼠的免疫组织化学染色证实,表皮调节素是富含角膜缘上皮的基因之一,与角膜缘上皮基底细胞相关。在角膜缘和角膜基底细胞中,我们检测到了在这两个区域差异表达的先前未知的基因,这进一步有助于我们理解这两个密切相关的基底细胞群的独特异质性。我们的研究结果表明,我们能够在其“自然”静止状态下获得富含干细胞的角膜缘基底细胞群的准确基因表达谱。

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