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Single-cell correlations of mRNA and protein content in a human monocytic cell line after LPS stimulation

机译:LPS刺激后人单核细胞系中mRNA和蛋白质含量的单细胞相关性

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摘要

The heterogeneity of mRNA and protein expression at the single-cell level can reveal fundamental information about cellular response to external stimuli, including the sensitivity, timing, and regulatory interactions of genes. Here we describe a fully automated system to digitally count the intron, mRNA, and protein content of up to five genes of interest simultaneously in single-cells. Full system automation of 3D microscope scans and custom image analysis routines allows hundreds of individual cells to be automatically segmented and the mRNA-protein content to be digitally counted. Single-molecule intron and mRNA content is measured by single-molecule fluorescence in-situ hybridization (smFISH), while protein content is quantified though the use of antibody probes. To mimic immune response to bacterial infection, human monocytic leukemia cells (THP-1) were stimulated with lipopolysaccharide (LPS), and the expression of two inflammatory genes, IL1β (interleukin 1β) and TNF-α (tumor necrosis factor α), were simultaneously quantified by monitoring the intron, mRNA, and protein levels over time. The simultaneous labeling of cellular content allowed for a series of correlations at the single-cell level to be explored, both in the progressive maturation of a single gene (intron-mRNA-protein) and comparative analysis between the two immune response genes. In the absence of LPS stimulation, mRNA expression of IL1β and TNF-α were uncorrelated. Following LPS stimulation, mRNA expression of the two genes became more correlated, consistent with a model in which IL1β and TNF-α upregulation occurs in parallel through independent mechanistic pathways. This smFISH methodology can be applied to different complex biological systems to provide valuable insight into highly dynamic gene mechanisms that determine cell plasticity and heterogeneity of cellular response.
机译:在单细胞水平上,mRNA和蛋白质表达的异质性可以揭示有关细胞对外部刺激的反应的基本信息,包括基因的敏感性,时序和调节相互作用。在这里,我们描述了一个全自动系统,可以在单个细胞中同时对多达五个感兴趣基因的内含子,mRNA和蛋白质含量进行数字计数。 3D显微镜扫描和自定义图像分析例程的完全系统自动化可自动分割数百个单个细胞,并以数字方式计数mRNA蛋白含量。通过单分子荧光原位杂交(smFISH)测量单分子内含子和mRNA含量,同时通过使用抗体探针对蛋白质含量进行定量。为了模拟对细菌感染的免疫反应,用脂多糖(LPS)刺激人单核细胞白血病细胞(THP-1),并表达了两个炎症基因IL1β(白介素1β)和TNF-α(肿瘤坏死因子α)的表达。通过监测内含子,mRNA和蛋白质水平随时间进行定量。细胞含量的同时标记允许在单个细胞(内含子-mRNA-蛋白质)的逐步成熟和两个免疫反应基因之间的比较分析中探索一系列在单细胞水平上的相关性。在没有LPS刺激的情况下,IL1β和TNF-α的mRNA表达不相关。在LPS刺激后,两个基因的mRNA表达变得更加相关,这与通过独立的机制途径并行发生IL1β和TNF-α上调的模型相一致。此smFISH方法可应用于不同的复杂生物系统,以提供宝贵的见解,以高度动态的基因机制确定细胞可塑性和细胞应答的异质性。

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