Biozentrum, University of Basel, Basel, Switzerland.
Methods Mol Biol. 2022;2537:37-49. doi: 10.1007/978-1-0716-2521-7_3.
Over the past years, technological advances in transcriptomics provided deep insights into gene expression programs and their role in tissue organization and cellular functions. The isolation of ribosome-associated transcripts is a powerful approach for deep profiling of cell type-specific transcripts, and particularly well-suited for quantitative analysis of transcript isoforms. This method employs conditional ribosome epitope-tagging in genetically defined cell types, followed by affinity-isolation of ribosome-associated mRNAs. Advantages of this approach are twofold: first, the method enables rapid retrieval of mRNAs without tissue dissociation and cell sorting steps. Second, capturing of ribosome-associated mRNAs, enriches for transcripts recruited for active translation, therefore providing an approximation to the cellular translatome. Here, we describe one application of this method for the identification of the transcriptome of excitatory neuronal cells (mitral and tufted cells) of the mouse olfactory bulb, through RiboTag isolation from the vGlut2-IRES-cre mouse line as genetic driver of endogenously tagged ribosome expression.
在过去的几年中,转录组学技术的进步为基因表达程序及其在组织组织和细胞功能中的作用提供了深刻的见解。核糖体相关转录本的分离是一种对细胞类型特异性转录本进行深度分析的有效方法,特别适合于转录本异构体的定量分析。该方法采用条件核糖体表位标记在遗传定义的细胞类型中,然后亲和分离核糖体相关的 mRNA。该方法的优点有两个:首先,该方法能够快速检索 mRNA,而无需组织解离和细胞分选步骤。其次,捕获核糖体相关的 mRNA,富集用于活跃翻译的转录本,因此提供了对细胞翻译组的近似。在这里,我们描述了该方法的一种应用,即通过从 vGlut2-IRES-cre 小鼠系中分离 RiboTag,作为内源性标记核糖体表达的遗传驱动,鉴定小鼠嗅球兴奋性神经元细胞(僧帽细胞和丛状细胞)的转录组。