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Glyoxal fixation facilitates transcriptome analysis after antigen staining and cell sorting by flow cytometry

机译:乙醛固定促进抗原染色后的转录组分析和通过流式细胞术分选

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A simple method for extraction of high quality RNA from cells that have been fixed, stained and sorted by flow cytometry would allow routine transcriptome analysis of highly purified cell populations and single cells. However, formaldehyde fixation impairs RNA extraction and inhibits RNA amplification. Here we show that good quality RNA can be readily extracted from stained and sorted mammalian cells if formaldehyde is replaced by glyoxal—a well-characterised fixative that is widely compatible with immunofluorescent staining methods. Although both formaldehyde and glyoxal efficiently form protein-protein crosslinks, glyoxal does not crosslink RNA to proteins nor form stable RNA adducts, ensuring that RNA remains accessible and amenable to enzymatic manipulation after glyoxal fixation. We find that RNA integrity is maintained through glyoxal fixation, permeabilisation with methanol or saponin, indirect immunofluorescent staining and flow sorting. RNA can then be extracted by standard methods and processed into RNA-seq libraries using commercial kits; mRNA abundances measured by poly(A)+ RNA-seq correlate well between freshly harvested cells and fixed, stained and sorted cells. We validate the applicability of this approach to flow cytometry by staining MCF-7 cells for the intracellular G2/M-specific antigen cyclin B1 (CCNB1), and show strong enrichment for G2/M-phase cells based on transcriptomic data. Switching to glyoxal fixation with RNA-compatible staining methods requires only minor adjustments of most existing staining and sorting protocols, and should facilitate routine transcriptomic analysis of sorted cells.
机译:通过流式细胞术中染色和分类的细胞中提取高质量RNA的简单方法将允许常规转录组的高度纯化的细胞群和单细胞。然而,甲醛固定损害RNA提取并抑制RNA扩增。在这里,如果甲醛被甲醛替代的甲醛 - 一种表征的固定剂替代,我们可以从染色和分选哺乳动物细胞中易于从染色和分选哺乳动物细胞中提取良好的质量RNA。虽然甲醛和乙醛有效地形成蛋白质 - 蛋白质交联,但乙二醛不会与蛋白质交联,也不会形成稳定的RNA加合物,确保RNA在乙二醛固定后酶活性并允许酶促操作。我们发现RNA完整性通过乙二醛固定,渗透与甲醇或皂苷,间接免疫荧光染色和流量分选进行渗透性。然后可以通过标准方法提取RNA并使用商业套件加工成RNA-SEQ文库;通过聚(A)+ RNA-SEQ测量的mRNA丰度在新鲜收获的细胞之间良好地相关,并固定,染色和分选细胞。我们通过染色MCF-7细胞用于细胞内G2 / M特异性抗原细胞周期蛋白B1(CCNB1)的MCF-7细胞来验证这种方法的适用性,并基于转录组数据显示G2 / M相细胞的强烈富集。用RNA相容染色方法切换到乙二醛固定,只需要对大多数现有染色和分选方案进行微小的调整,并且应促进对分类细胞的常规转录组分析。

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