Silas Sukrit, Jain Nimit, Stadler Michael, Fu Becky Xu Hua, Sánchez-Amat Antonio, Fire Andrew Z, Arribere Joshua
Department of Pathology, Stanford University, Stanford, CA, USA.
Department of Chemical and Systems Biology, Stanford University, Stanford, CA, USA.
Bio Protoc. 2018 Feb 20;8(4). doi: 10.21769/BioProtoc.2727.
Next generation high-throughput sequencing has enabled sensitive and unambiguous analysis of RNA populations in cells. Here, we describe a method for isolation and strand-specific sequencing of small RNA pools from bacteria that can be multiplexed to accommodate multiple biological samples in a single experiment. Small RNAs are isolated by polyacrylamide gel electrophoresis and treated with T4 polynucleotide kinase. This allows for 3' adapter ligation to CRISPR RNAs, which don't have pre-existing 3'-OH ends. Pre-adenylated adapters are then ligated using T4 RNA ligase 1 in the absence of ATP and with a high concentration of polyethylene glycol (PEG). The 3' capture step enables precise determination of the 3' ends of diverse RNA molecules. Additionally, a random hexamer in the ligated adapter helps control for potential downstream amplification bias. Following reverse-transcription, the cDNA product is circularized and libraries are prepared by PCR. We show that the amplified library need not be visible by gel electrophoresis for efficient sequencing of the desired product. Using this method, we routinely prepare RNA sequencing libraries from minute amounts of purified small RNA. This protocol is tailored to assay for CRISPR RNA biogenesis in bacteria through sequencing of mature CRISPR RNAs, but can be used to sequence diverse classes of small RNAs. We also provide a fully worked example of our data processing pipeline, with instructions for running the provided scripts.
下一代高通量测序技术能够对细胞中的RNA群体进行灵敏且明确的分析。在此,我们描述了一种从细菌中分离小RNA池并进行链特异性测序的方法,该方法可进行多重操作,以便在单个实验中处理多个生物样品。小RNA通过聚丙烯酰胺凝胶电泳分离,并用T4多核苷酸激酶处理。这使得能够将3'接头连接到没有预先存在的3'-OH末端的CRISPR RNA上。然后在不存在ATP且含有高浓度聚乙二醇(PEG)的情况下,使用T4 RNA连接酶1连接预腺苷化的接头。3'捕获步骤能够精确确定各种RNA分子的3'末端。此外,连接的接头中的随机六聚体有助于控制潜在的下游扩增偏差。逆转录后,cDNA产物环化,并通过PCR制备文库。我们表明,对于所需产物的高效测序,扩增的文库无需通过凝胶电泳可见。使用这种方法,我们常规地从微量纯化的小RNA制备RNA测序文库。该方案专为通过成熟CRISPR RNA测序来检测细菌中的CRISPR RNA生物合成而设计,但可用于对各种小RNA类别进行测序。我们还提供了数据处理流程的完整示例,并附有运行所提供脚本的说明。