小鼠滋养细胞干细胞逆转录-定量聚合酶链反应准确内参基因的选择

Kaori Motomura, K. Inoue, A. Ogura
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引用次数: 5

摘要

小鼠滋养细胞干细胞(TSCs)形成不同大小和形态的集落,这可能反映了它们的分化程度。因此,每种菌落类型都有其特有的基因表达谱;然而,内参基因的表达水平也可能发生变化,导致其估计基因表达水平的波动。在本研究中,我们使用几何平均方法验证了7个管家基因,并确定Gapdh是不同菌落类型中最稳定的基因。的确,当以Gapdh为参照时,TSC标记基因Elf5的表达水平严格地将TSC菌落分为两组:由1型和2型菌落组成的高表达组和由3型和4型菌落组成的低表达组。这种聚类与我们基于时间依赖的群体转变对未分化/分化菌落的假设分类一致。相比之下,使用不稳定的内参基因(Rn18s)则无法进行这种明确的分类。另一种TSC标记Cdx2与内参基因无关,均未显示出明显的集落类型特异性表达模式。选择稳定的内参基因进行定量基因表达分析可能是至关重要的,特别是当使用由异质细胞群组成的细胞系时。
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Selection of accurate reference genes in mouse trophoblast stem cells for reverse transcription-quantitative polymerase chain reaction
Mouse trophoblast stem cells (TSCs) form colonies of different sizes and morphologies, which might reflect their degrees of differentiation. Therefore, each colony type can have a characteristic gene expression profile; however, the expression levels of internal reference genes may also change, causing fluctuations in their estimated gene expression levels. In this study, we validated seven housekeeping genes by using a geometric averaging method and identified Gapdh as the most stable gene across different colony types. Indeed, when Gapdh was used as the reference, expression levels of Elf5, a TSC marker gene, stringently classified TSC colonies into two groups: a high expression groups consisting of type 1 and 2 colonies, and a lower expression group consisting of type 3 and 4 colonies. This clustering was consistent with our putative classification of undifferentiated/differentiated colonies based on their time-dependent colony transitions. By contrast, use of an unstable reference gene (Rn18s) allowed no such clear classification. Cdx2, another TSC marker, did not show any significant colony type-specific expression pattern irrespective of the reference gene. Selection of stable reference genes for quantitative gene expression analysis might be critical, especially when cell lines consisting of heterogeneous cell populations are used.
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