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EC-tagging allows cell type-specific RNA analysis

机译:EC标签可进行细胞类型特异性RNA分析

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摘要

Purification of cell type-specific RNAs remains a significant challenge. One solution involves biosynthetic tagging of target RNAs. RNA tagging via incorporation of 4-thiouracil (TU) in cells expressing transgenic uracil phosphoribosyltransferase (UPRT), a method known as TU-tagging, has been used in multiple systems but can have limited specificity due to endogenous pathways of TU incorporation. Here, we describe an alternative method that requires the activity of two enzymes: cytosine deaminase (CD) and UPRT. We found that the sequential activity of these enzymes converts 5-ethynylcytosine (EC) to 5-ethynyluridine monophosphate that is subsequently incorporated into nascent RNAs. The ethynyl group allows efficient detection and purification of tagged RNAs. We show that ‘EC-tagging’ occurs in tissue culture cells and Drosophila engineered to express CD and UPRT. Additional control can be achieved through a split-CD approach in which functional CD is reconstituted from independently expressed fragments. We demonstrate the sensitivity and specificity of EC-tagging by obtaining cell type-specific gene expression data from intact Drosophila larvae, including transcriptome measurements from a small population of central brain neurons. EC-tagging provides several advantages over existing techniques and should be broadly useful for investigating the role of differential RNA expression in cell identity, physiology and pathology.
机译:细胞类型特异性RNA的纯化仍然是一项重大挑战。一种解决方案涉及靶RNA的生物合成标记。通过在表达转基因尿嘧啶磷酸核糖基转移酶(UPRT)的细胞中掺入4-硫尿嘧啶(TU)进行RNA标记,一种称为TU标记的方法,已在多个系统中使用,但由于TU掺入的内源途径,其特异性可能有限。在这里,我们描述了一种需要两种酶活性的替代方法:胞嘧啶脱氨酶(CD)和UPRT。我们发现这些酶的顺序活性将5-乙炔基胞嘧啶(EC)转换为5-乙炔基尿苷单磷酸,随后将其掺入新生RNA中。乙炔基可有效检测和纯化标记的RNA。我们表明,“ EC标签”发生在组织培养细胞和果蝇中,旨在表达CD和UPRT。通过分裂CD方法可以实现额外的控制,在这种方法中,功能CD从独立表达的片段中重建出来。我们通过从完整的果蝇幼虫获得细胞类型特异性基因表达数据,包括从一小部分中枢脑神经元进行转录组测量,来证明EC标签的敏感性和特异性。 EC标签提供了优于现有技术的多个优点,并且应广泛用于研究差异RNA表达在细胞身份,生理学和病理学中的作用。

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