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RNA干扰处理细胞及天然细胞群体中蛋白质功能的单细胞流式细胞术

Single cell cytometry of protein function in RNAi treated cells and in native populations.

作者信息

LaPan Peter, Zhang Jing, Pan Jing, Hill Andrew, Haney Steven A

机构信息

Department of Biological Technologies, Oncology Research, Wyeth Research, 87 Cambridge Park Drive, Cambridge, MA 02140, USA.

出版信息

BMC Cell Biol. 2008 Aug 1;9:43. doi: 10.1186/1471-2121-9-43.

Abstract

BACKGROUND

High Content Screening has been shown to improve results of RNAi and other perturbations, however significant intra-sample heterogeneity is common and can complicate some analyses. Single cell cytometry can extract important information from subpopulations within these samples. Such approaches are important for immune cells analyzed by flow cytometry, but have not been broadly available for adherent cells that are critical to the study of solid-tumor cancers and other disease models.

RESULTS

We have directly quantitated the effect of resolving RNAi treatments at the single cell level in experimental systems for both exogenous and endogenous targets. Analyzing the effect of an siRNA that targets GFP at the single cell level permits a stronger measure of the absolute function of the siRNA by gating to eliminate background levels of GFP intensities. Extending these methods to endogenous proteins, we have shown that well-level results of the knockdown of PTEN results in an increase in phospho-S6 levels, but at the single cell level, the correlation reveals the role of other inputs into the pathway. In a third example, reduction of STAT3 levels by siRNA causes an accumulation of cells in the G1 phase of the cell cycle, but does not induce apoptosis or necrosis when compared to control cells that express the same levels of STAT3. In a final example, the effect of reduced p53 levels on increased adriamycin sensitivity for colon carcinoma cells was demonstrated at the whole-well level using siRNA knockdown and in control and untreated cells at the single cell level.

CONCLUSION

We find that single cell analysis methods are generally applicable to a wide range of experiments in adherent cells using technology that is becoming increasingly available to most laboratories. It is well-suited to emerging models of signaling dysfunction, such as oncogene addition and oncogenic shock. Single cell cytometry can demonstrate effects on cell function for protein levels that differ by as little as 20%. Biological differences that result from changes in protein level or pathway activation state can be modulated directly by RNAi treatment or extracted from the natural variability intrinsic to cells grown under normal culture conditions.

摘要

背景

高内涵筛选已被证明可改善RNA干扰及其他干扰实验的结果,然而样本内显著的异质性很常见,可能会使某些分析变得复杂。单细胞流式细胞术能够从这些样本中的亚群提取重要信息。此类方法对于通过流式细胞术分析的免疫细胞很重要,但对于实体肿瘤癌症及其他疾病模型研究至关重要的贴壁细胞而言,尚未广泛可用。

结果

我们已在实验系统中针对外源性和内源性靶点,直接在单细胞水平定量解析RNA干扰处理的效果。在单细胞水平分析靶向绿色荧光蛋白(GFP)的小干扰RNA(siRNA)的效果,通过设门控以消除GFP强度的背景水平,从而更有力地衡量siRNA的绝对功能。将这些方法扩展至内源性蛋白质,我们发现敲低磷酸酶及张力蛋白同源物(PTEN)的孔水平结果会导致磷酸化核糖体蛋白S6(phospho-S6)水平升高,但在单细胞水平,这种相关性揭示了该信号通路中其他输入信号的作用。在第三个例子中,通过siRNA降低信号转导和转录激活因子3(STAT3)水平会导致细胞在细胞周期的G1期积累,但与表达相同水平STAT3的对照细胞相比,不会诱导细胞凋亡或坏死。在最后一个例子中,使用siRNA敲低在孔水平证明了降低p53水平对结肠癌细胞阿霉素敏感性增加的影响,并在单细胞水平对对照细胞和未处理细胞进行了验证。

结论

我们发现单细胞分析方法通常适用于使用大多数实验室越来越容易获得的技术对贴壁细胞进行的广泛实验。它非常适合新兴的信号功能障碍模型,如癌基因添加和致癌休克。单细胞流式细胞术能够证明对细胞功能的影响,即使蛋白质水平差异低至20%。蛋白质水平或信号通路激活状态变化所导致的生物学差异可通过RNA干扰处理直接调节,或从正常培养条件下生长的细胞固有的自然变异性中提取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57ad/2529295/77d5f560e6a6/1471-2121-9-43-1.jpg

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