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首页> 外文期刊>Current Protocols in Molecular Biology >RNA Fragmentation and Sequencing (RF-Seq): Cost-Effective, Time-Efficient, and High-Throughput 3' mRNA Sequencing Library Construction in a Single Tube
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RNA Fragmentation and Sequencing (RF-Seq): Cost-Effective, Time-Efficient, and High-Throughput 3' mRNA Sequencing Library Construction in a Single Tube

机译:RNA碎片和测序(RF-SEQ):在单管中具有成本效益,时间效率和高通量3'mRNA测序文库施工

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Over the past decade, transcriptomic studies using next-generation sequencing (NGS)-based RNA sequencing (RNA-Seq) have greatly contributed to characterizing biochemical and physiological changes in cells and tissues across organisms and experimental conditions. Critical steps in RNA-Seq include the preparation of the sequencing library from extracted RNA. Currently, a large panoply of RNA-Seq kits are commercially available. In these kits, conversion of RNA into a sequencing library involves multiple steps, which are labor-intensive, and cost per sample for library preparation may limit routine use of RNA-Seq. Here we describe a simple method for RNA-Seq library construction, referred to as RNA Fragmentation and Sequencing (RF-Seq). RF-Seq requires as little as 10 ng of total RNA and facilitates the sequencing of the 3' end of mRNAs. RF-Seq involves the fragmentation of total RNA followed by reverse transcription in presence of the oligo(dT) primer/template switch oligonucleotide and a sample barcoding/enrichment within a single PCR tube/well. The sample barcoding/enrichment step provides more flexibility for individual sample handling. The use of just twenty orthogonal Illumina TruSeq HT barcoding primers facilitates the preparation of 96 uniquely labeled RF-Seq libraries in a single 96-well PCR plate. Twelve RF-Seq libraries can be prepared within 4 hr, with an approximate cost of $ 10/sample. We provide an example of using RF-Seq to measure gene expression upon activation of an innate immune pathway using STING activator in human blood cells, highlighting the potential usefulness of the proposed method in routine transcriptomic applications such as high-throughput drug screening and/or preclinical toxicity assays.
机译:在过去的十年中,基于下一代测序(NGS)的RNA测序(RNA-SEQ)的转录组研究具有极大的促进了在跨生物体和实验条件的细胞和组织中的生物化学和生理变化。 RNA-SEQ中的关键步骤包括从提取的RNA中制备测序文库。目前,RNA-SEQ试剂盒的大型胰蛋白石可商购获得。在这些试剂盒中,RNA转化为测序文库的转化涉及多个步骤,这些步骤是劳动密集型的,并且图书馆制剂的每个样品的成本可能限制RNA-SEQ的常规使用。在这里,我们描述了一种简单的RNA-SEQ文库构建方法,称为RNA碎片和测序(RF-SEQ)。 RF-SEQ需要少于10ng的总RNA,并促进MRNA的3'末端的测序。 RF-SEQ涉及总RNA的碎片,然后在寡核苷酸(DT)底漆/模板开关寡核苷酸存在下逆转录,单个PCR管/孔内的样品条码/富集。样品条形码/富集步骤为单个样品处理提供了更大的灵活性。仅使用20个正交的Illumina Truseq HT条形码引物有助于在单个96孔PCR板中制备96个唯一标记的RF-SEQ文库。 12个RF-SEQ库可以在4小时内准备,大约10美元/样品的成本。我们提供了使用RF-SEQ测量基因表达在人体血细胞中的刺激活化剂在激活先天免疫途径后测量基因表达的举例,突出了所提出的方法在常规转录组种应用中的潜在有用性,例如高通量药物筛选和/或临床前毒性测定。

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