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首页> 外文期刊>Wiley Interdisciplinary Reviews. Developmental Biology >Uncovering cell type-specific complexities of gene expression and RNA metabolism by TU-tagging and EC-tagging
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Uncovering cell type-specific complexities of gene expression and RNA metabolism by TU-tagging and EC-tagging

机译:通过TU标记和EC标记揭示基因表达和RNA代谢的细胞类型特异性复杂性

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摘要

Cell type-specific transcription is a key determinant of cell fate and function. An ongoing challenge in biology is to develop robust and stringent biochemical methods to explore gene expression with cell type specificity. This challenge has become even greater as researchers attempt to apply high-throughput RNA analysis methods under in vivo conditions. TU-tagging and EC-tagging are in vivo biosynthetic RNA tagging techniques that allow spatial and temporal specificity in RNA purification. Spatial specificity is achieved through targeted expression of pyrimidine salvage enzymes (uracil phosphoribosyltransferase and cytosine deaminase) and temporal specificity is achieved by controlling exposure to bioorthogonal substrates of these enzymes (4-thiouracil and 5-ethynylcytosine). Tagged RNAs can be purified from total RNA extracted from an animal or tissue and used in transcriptome profiling analyses. In addition to identifying cell type-specific mRNA profiles, these techniques are applicable to noncoding RNAs and can be used to measure RNA transcription and decay. Potential applications of TU-tagging and EC-tagging also include fluorescent RNA imaging and selective definition of RNA-protein interactions. TU-tagging and EC-tagging hold great promise for supporting research at the intersection of RNA biology and developmental biology. This article is categorized under: Technologies Analysis of the Transcriptome
机译:细胞类型特异性转录是细胞命运和功能的关键决定因素。生物学的持续挑战是制定鲁棒和严格的生化方法,以探讨细胞类型特异性的基因表达。随着研究人员试图在体内条件下应用高通量RNA分析方法,这一挑战变得更大。 Tu-Tagging和EC标签是体内生物合成RNA标记技术,其允许RNA纯化中的空间和时间特异性。通过靶向表达嘧啶救赎酶(Uracil磷酸溶胶转移酶和胞嘧啶脱氨酶)的表达实现了空间特异性,并且通过控制暴露于这些酶的Boorthogonal底物(4-硫脲和5-乙炔基胞嘧啶)而实现了时间特异性。标记的RNA可以从动物或组织中提取的总RNA纯化,并用于转录组分析分析。除了鉴定细胞类型特异性mRNA型材之外,这些技术还适用于非致rNA,可用于测量RNA转录和腐烂。 Tu-Tagging和EC标签的潜在应用还包括荧光RNA成像和RNA-蛋白质相互作用的选择性定义。 TU-TAGGING和EC标签对RNA生物学和发育生物学交叉口的研究具有很大的承诺。本文分类为:Technologies&转录组分析

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