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从恒河猴中分离出的感染猿猴免疫缺陷病毒的CD4+ T细胞中mRNA和表面蛋白表达的单细胞定量分析

Single-cell Quantitation of mRNA and Surface Protein Expression in Simian Immunodeficiency Virus-infected CD4+ T Cells Isolated from Rhesus macaques.

作者信息

Tokarev Andrey, Creegan Matthew, Eller Michael A, Roederer Mario, Bolton Diane L

机构信息

US Military HIV Research Program, Henry M. Jackson Foundation, Walter Reed Army Institute of Research.

Vaccine Research Center, NIAID, NIH.

出版信息

J Vis Exp. 2018 Sep 25(139):57776. doi: 10.3791/57776.

Abstract

Single-cell analysis is an important tool for dissecting heterogeneous populations of cells. The identification and isolation of rare cells can be difficult. To overcome this challenge, a methodology combining indexed flow cytometry and high-throughput multiplexed quantitative polymerase chain reaction (qPCR) was developed. The objective was to identify and characterize simian immunodeficiency virus (SIV)-infected cells present within rhesus macaques. Through quantitation of surface protein by fluorescence-activated cell sorting (FACS) and mRNA by qPCR, virus-infected cells are identified by viral gene expression, which is combined with host gene and protein measurements to create a multidimensional profile. We term the approach, targeted Single-Cell Proteo-transcriptional Evaluation, or tSCEPTRE. To perform the method, viable cells are stained with fluorescent antibodies specific for surface markers used for FACS isolation of a cell subset and/or downstream phenotypic analysis. Single cells are sorted followed by immediate lysis, multiplex reverse transcription (RT), PCR pre-amplification, and high throughput qPCR of up to 96 transcripts. FACS measurements are recorded at the time of sorting and subsequently linked to the gene expression data by well position to create a combined protein and transcriptional profile. To study SIV-infected cells directly ex vivo, cells were identified by qPCR detection of multiple viral RNA species. The combination of viral transcripts and the quantity of each provide a framework for classifying cells into distinct stages of the viral life cycle (e.g., productive versus non-productive). Moreover, tSCEPTRE of SIV cells were compared to uninfected cells isolated from the same specimen to assess differentially expressed host genes and proteins. The analysis revealed previously unappreciated viral RNA expression heterogeneity among infected cells as well as in vivo SIV-mediated post-transcriptional gene regulation with single-cell resolution. The tSCEPTRE method is relevant for the analysis of any cell population amenable to identification by expression of surface protein marker(s), host or pathogen gene(s), or combinations thereof.

摘要

单细胞分析是剖析异质细胞群体的重要工具。识别和分离稀有细胞可能具有挑战性。为了克服这一挑战,开发了一种将索引流式细胞术与高通量多重定量聚合酶链反应(qPCR)相结合的方法。其目的是识别和表征恒河猴体内感染猿猴免疫缺陷病毒(SIV)的细胞。通过荧光激活细胞分选(FACS)对表面蛋白进行定量以及通过qPCR对mRNA进行定量,通过病毒基因表达来识别病毒感染的细胞,将其与宿主基因和蛋白质测量结果相结合,以创建多维图谱。我们将这种方法称为靶向单细胞蛋白质转录评估(tSCEPTRE)。为了实施该方法,用针对用于FACS分离细胞亚群和/或下游表型分析的表面标志物的荧光抗体对活细胞进行染色。分选单个细胞,然后立即进行裂解、多重逆转录(RT)、PCR预扩增以及对多达96个转录本进行高通量qPCR。在分选时记录FACS测量结果,随后通过孔位置将其与基因表达数据相关联,以创建蛋白质和转录组合图谱。为了直接在体外研究SIV感染的细胞,通过对多种病毒RNA种类进行qPCR检测来识别细胞。病毒转录本及其各自的数量组合为将细胞分类到病毒生命周期的不同阶段(例如,生产性与非生产性)提供了一个框架。此外,将SIV细胞的tSCEPTRE与从同一样本中分离出的未感染细胞进行比较,以评估差异表达的宿主基因和蛋白质。分析揭示了感染细胞之间以及体内SIV介导的具有单细胞分辨率的转录后基因调控中以前未被认识到的病毒RNA表达异质性。tSCEPTRE方法适用于分析任何可通过表面蛋白标志物、宿主或病原体基因或其组合的表达进行识别的细胞群体。

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