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How to measure RNA expression in rare senescent cells expressing any specific protein such as p16Ink4a

机译:如何测量表达任何特定蛋白质(例如p16Ink4a)的稀有衰老细胞中的RNA表达

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摘要

Here we describe a carefully optimized method for the preparation of high quality RNA by flow sorting of formaldehyde fixed senescent cells immunostained for any intracellular antigen. Replicative cellular senescence is a phenomenon of irreversible growth arrest triggered by the accumulation of a discrete number of cell divisions. The underlying cause of senescence due to replicative exhaustion is telomere shortening. We document here a spontaneous and apparently stochastic process that continuously generates senescent cells in cultures fully immortalized with telomerase. In the course of studying this phenomenon we developed a preparative fluorescence activated flow sorting method based on immunofluorescent staining of intracellular antigens that can also deliver RNA suitable for quantitative analysis of global gene expression. The protocols were developed using normal human diploid fibroblasts (HDF) and up to 5×107 cells could be conveniently processed in a single experiment. The methodology is based on formaldehyde crosslinking of cells, followed by permeabilization, antibody staining, flow sorting, reversal of the crosslinks, and recovery of the RNA. We explored key parameters such as crosslink reversal that affect the fragmentation of RNA. The recovered RNA is of high quality for downstream molecular applications based on short range sequence analysis, such qPCR, hybridization microarrays, and next generation sequencing. The RNA was analyzed by Affymetrix Gene Chip expression profiling and compared to RNA prepared by the direct lysis of cells. The correlation between the data sets was very high, indicating that the procedure does not introduce systematic changes in the mRNA transcriptome. The methods presented in this communication should be of interest to many investigators working in diverse model systems.
机译:在这里,我们描述了一种精心优化的方法,该方法通过对任何细胞内抗原进行免疫染色的甲醛固定衰老细胞进行分流,从而制备高质量的RNA。复制性细胞衰老是一种不可逆的生长停滞现象,由不连续数目的细胞分裂的积累触发。由于复制性衰竭而导致衰老的根本原因是端粒缩短。我们在这里记录了自发且明显随机的过程,该过程在端粒酶完全永生化的培养物中连续产生衰老细胞。在研究这种现象的过程中,我们开发了一种基于细胞内抗原免疫荧光染色的荧光激活流分选制备方法,该方法还可提供适用于定量分析全局基因表达的RNA。该协议是使用正常人二倍体成纤维细胞(HDF)开发的,一次实验最多可以处理5×10 7 细胞。该方法基于细胞的甲醛交联,然后进行透化,抗体染色,流分选,交联逆转和RNA回收。我们探索了影响RNA片段化的关键参数,例如交联逆转。回收的RNA具有高质量,可用于基于短程序列分析的下游分子应用,例如qPCR,杂交微阵列和下一代测序。通过Affymetrix基因芯片表达谱分析RNA,并将其与通过细胞直接裂解制备的RNA进行比较。数据集之间的相关性非常高,表明该程序未在mRNA转录组中引入系统性变化。在本交流中提出的方法应为从事不同模型系统工作的许多研究人员所感兴趣。

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