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Development and Validation of a Rex1-RFP Potency Activity Reporter Assay That Quantifies Stress-Forced Potency Loss in Mouse Embryonic Stem Cells

机译:Rex1-RFP效能报告基因检测试剂盒的开发和验证,该方法可量化小鼠胚胎干细胞中受胁迫的效能损失

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Assays for embryonic stem cells (ESCs) of the blastocyst are needed to quantify stress-induced decreases of potent subpopulations. High-throughput screens (HTSs) of stressed ESCs quantify embryonic stress, diminishing laboratory animal needs. Normal or stress-induced ESC differentiation is marked by Rex1 potency factor loss. Potency reporter ESC assays were developed, using low-stress techniques to create transgenic ESCs. Rex1 and Oct4 promoters drove RFP and green fluorescent protein (GFP) expression, respectively. Lentivirus infection and fluorescence-activated cell sorting selection of ESCs obviated the need for stressful electroporation and antibiotic selection, respectively. We showed using immunoblots, microscopic analysis, flow cytometry, and fluorescence microplate reader that the response to stress of potency-reporter ESCs is similar to parental ESCs assayed by biochemical means. Stress caused a dose-dependent decrease in bright Rex1-RFP+ ESCs and increase in Rex1 dim ESCs. At highest stress, approximate to 20% of bright Rex1-RFP cells are lost coinciding with a 2.8-fold increase in Rex1-RFP dim cells that approach 20%. This conversion of bright to dim cells tested by flow cytometry is commensurate with about 60% loss in fluorescence measured by microplate reader. Dose-dependent stress-induced Rex1-RFP and endogenous Rex1 protein decreases are similar. The data show that Rex1 reporter ESCs accurately report stress in a microplate reader-based HTS. The increasing dim Rex1 subpopulation size is balanced by the decreasing total ESC number during culture at multiple sorbitol doses. This is consistent with previous observations that stress forces potency decrease and differentiation increase to compensate for stress-induced diminished stem cell population growth.
机译:需要对胚泡的胚胎干细胞(ESC)进行测定,以量化压力诱导的有效亚群减少。应激胚胎干细胞的高通量筛选(HTS)可以量化胚胎应激,从而减少实验动物的需求。正常或应激诱导的ESC分化以Rex1效能因子损失为标志。使用低压力技术创建转基因ESC,开发了有力的报告人ESC分析方法。 Rex1和Oct4启动子分别驱动RFP和绿色荧光蛋白(GFP)的表达。慢病毒感染和ESC的荧光激活细胞分选选择分别消除了对应激性电穿孔和抗生素选择的需要。我们使用免疫印迹,显微镜分析,流式细胞仪和荧光酶标仪显示,对效价报告ESC的应激反应与通过生化手段测定的亲本ESC相似。压力导致明亮的Rex1-RFP + ESC呈剂量依赖性降低,而Rex1昏暗ESC呈剂量依赖性。在最高应力下,大约有20%的明亮Rex1-RFP细胞丢失,而接近20%的Rex1-RFP昏暗细胞增加了2.8倍。通过流式细胞仪检测的亮细胞向暗细胞的这种转化与通过酶标仪测量的荧光损失约60%相称。剂量依赖性应激诱导的Rex1-RFP与内源性Rex1蛋白的减少相似。数据显示Rex1报告基因ESC在基于酶标仪的HTS中准确报告了应力。在多个山梨糖醇剂量下培养期间,总的ESC数目减少,可以平衡增加的昏暗Rex1亚群大小。这与以前的观察结果一致,即压力的效力降低和分化增加,以补偿压力诱导的干细胞群体生长减少。

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