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使用流式细胞术或质谱细胞术对单个细胞中的 RNA 和蛋白质表达特征进行多重分析。

Multiplexed profiling of RNA and protein expression signatures in individual cells using flow or mass cytometry.

机构信息

Department of Molecular and Clinical Cancer Medicine, Institute of Translational Medicine, University of Liverpool, Liverpool, UK.

Baxter Laboratory in Stem Cell Biology, Department of Microbiology and Immunology, Stanford University, Stanford, CA, USA.

出版信息

Nat Protoc. 2019 Mar;14(3):901-920. doi: 10.1038/s41596-018-0120-8. Epub 2019 Feb 6.

Abstract

Advances in single-cell analysis technologies are providing novel insights into phenotypic and functional heterogeneity within seemingly identical cell populations. RNA within single cells can be analyzed using unbiased sequencing protocols or through more targeted approaches using in situ hybridization (ISH). The proximity ligation assay for RNA (PLAYR) approach is a sensitive and high-throughput technique that relies on in situ and proximal ligation to measure at least 27 specific RNAs by flow or mass cytometry. We provide detailed instructions for combining this technique with antibody-based detection of surface/internal protein, allowing simultaneous highly multiplexed profiling of RNA and protein expression at single-cell resolution. PLAYR overcomes limitations on multiplexing seen in previous branching DNA-based RNA detection techniques by integration of a transcript-specific oligonucleotide sequence within a rolling-circle amplification (RCA). This unique transcript-associated sequence can then be detected by heavy metal (for mass cytometry)- or fluorophore (for flow cytometry)-conjugated complementary detection oligonucleotides. Included in this protocol is methodology to label oligonucleotides with lanthanide metals for use in mass cytometry. When analyzed by mass cytometry, up to 40 variables (with scope for future expansion) can be measured simultaneously. We used the described protocol to demonstrate intraclonal heterogeneity within primary cells from chronic lymphocytic leukemia patients, but it can be adapted to other primary cells or cell lines in suspension. This robust, reliable and reproducible protocol can be completed in 2-3 d and can be paused at several stages for convenience.

摘要

单细胞分析技术的进步正在为看似相同的细胞群体中的表型和功能异质性提供新的见解。可以使用无偏测序方案或通过更具针对性的方法(如原位杂交 (ISH))分析单细胞内的 RNA。RNA 原位邻近连接检测 (PLAYR) 方法是一种敏感且高通量的技术,依赖于原位和邻近连接,通过流式或质谱细胞术至少测量 27 种特定的 RNA。我们提供了将该技术与基于抗体的表面/内部蛋白检测相结合的详细说明,允许在单细胞分辨率下同时对 RNA 和蛋白质表达进行高度多重分析。PLAYR 通过在滚环扩增 (RCA) 中整合转录体特异性寡核苷酸序列来克服先前基于分支 DNA 的 RNA 检测技术中所见的限制。然后,通过重金属(用于质谱细胞术)或荧光染料(用于流式细胞术)偶联的互补检测寡核苷酸来检测这种独特的转录体相关序列。本方案包括用镧系金属标记寡核苷酸用于质谱细胞术的方法。通过质谱细胞术分析,最多可以同时测量 40 个变量(未来还有扩展的空间)。我们使用所描述的方案来证明慢性淋巴细胞白血病患者原代细胞中的克隆内异质性,但它可以适应其他悬浮的原代细胞或细胞系。这种强大、可靠和可重复的方案可以在 2-3 天内完成,并可以在几个阶段暂停,以方便操作。

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