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Global gene expression profiling reveals similarities and differences among mouse pluripotent stem cells of different origins and strains

机译:全球基因表达谱揭示不同来源和品系的小鼠多能干细胞之间的相似性和差异

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摘要

Pluripotent stem cell lines with similar phenotypes can be derived from both blastocysts (embryonic stem cells, ESC) and primordial germ cells (embryonic germ cells, EGC). Here, we present a compendium DNA microarray analysis of multiple mouse ESCs and EGCs from different genetic backgrounds (strains 129 and C57BL/6) cultured under standard conditions and in differentiation-promoting conditions by the withdrawal of Leukemia Inhibitory Factor (LIF) or treatment with retinoic acid (RA). All pluripotent cell lines showed similar gene expression patterns, which separated them clearly from other tissue stem cells with lower developmental potency. Differences between pluripotent lines derived from different sources (ESC vs. EGC) were smaller than differences between lines derived from different mouse strains (129 vs. C57BL/6). Even in the differentiation-promoting conditions, these pluripotent cells showed the same general trends of gene expression changes regardless of their origin and genetic background. These data indicate that ESCs and EGCs are indistinguishable based on global gene expression patterns alone. On the other hand, a detailed comparison between a group of ESC lines and a group of EGC lines identified 20 signature genes whose average expression levels were consistently higher in ESC lines, and 84 signature genes whose average expression levels were consistently higher in EGC lines, irrespective of mouse strains. Similar analysis identified 250 signature genes whose average expression levels were consistently higher in a group of 129 cell lines, and 337 signature genes whose average expression levels were consistently higher in a group of C57BL/6 cell lines. Although none of the genes was exclusively expressed in either ESCs versus EGCs or 129 versus C57BL/6, in combination these signature genes provide a reliable separation and identification of each cell type. Differentiation-promoting conditions also revealed some minor differences between the cell lines. For example, in the presence of RA, EGCs showed a lower expression of muscle- and cardiac-related genes and a higher expression of gonad-related genes than ESCs. Taken together, the results provide a rich source of information about the similarities and differences between ESCs and EGCs as well as 129 lines and C57BL/6 lines. Such information will be crucial to our understanding of pluripotent stem cells. The results also underscore the importance of studying multiple cell lines from different strains when making comparisons based on gene expression analysis.
机译:具有相似表型的多能干细胞系可以来源于胚泡(胚性干细胞,ESC)和原始生殖细胞(胚性生殖细胞,EGC)。在这里,我们介绍了通过在不同的遗传背景(菌株129和C57BL / 6)在标准条件下和在分化促进条件下培养的多种小鼠ESC和EGC(通过撤消白血病抑制因子(LIF)或用白血病抑制因子治疗)进行的摘要DNA微阵列分析视黄酸(RA)。所有多能细胞系均显示出相似的基因表达模式,从而将它们与其他具有较低发育潜能的组织干细胞清楚地分开。来自不同来源的多能系之间的差异(ESC与EGC)小于源自不同小鼠品系的多能系之间的差异(129与C57BL / 6)。即使在促进分化的条件下,这些多能细胞也显示出相同的基因表达变化总体趋势,无论其起源和遗传背景如何。这些数据表明,仅基于全局基因表达模式就无法区分ESC和EGC。另一方面,一组ESC系与一组EGC系之间的详细比较确定了20个在ESC系中平均表达水平始终较高的签名基因和84个在EGC系中平均表达水平始终较高的签名基因,不论小鼠品系如何。相似的分析确定了在一组129个细胞系中平均表达水平始终较高的250个签名基因,以及在一组C57BL / 6细胞系中平均表达水平始终较高的337个签名基因。尽管没有一个基因在ESCs与EGCs或129s与C57BL / 6中排他地表达,但结合起来,这些签名基因为每种细胞类型提供了可靠的分离和鉴定。促进分化的条件还揭示了细胞系之间的一些细微差异。例如,在存在RA的情况下,EGC的肌肉和心脏相关基因的表达低于ESC,而性腺相关基因的表达高于ESC。综上所述,结果为ESC和EGC以及129系和C57BL / 6系之间的异同提供了丰富的信息来源。这些信息对于我们对多能干细胞的理解至关重要。该结果还强调了在基于基因表达分析进行比较时研究来自不同菌株的多种细胞系的重要性。

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