Institute of Clinical Sciences, Faculty of Medicine, Imperial College London, London W12 0NN, United Kingdom.
MRC London Institute of Medical Sciences, London W12 0NN, United Kingdom.
Genome Res. 2018 Dec;28(12):1943-1956. doi: 10.1101/gr.235937.118. Epub 2018 Nov 7.
Cap analysis of gene expression (CAGE) is a methodology for genome-wide quantitative mapping of mRNA 5' ends to precisely capture transcription start sites at a single nucleotide resolution. In combination with high-throughput sequencing, CAGE has revolutionized our understanding of the rules of transcription initiation, led to discovery of new core promoter sequence features, and discovered transcription initiation at enhancers genome-wide. The biggest limitation of CAGE is that even the most recently improved version (nAnT-iCAGE) still requires large amounts of total cellular RNA (5 µg), preventing its application to scarce biological samples such as those from early embryonic development or rare cell types. Here, we present SLIC-CAGE, a Super-Low Input Carrier-CAGE approach to capture 5' ends of RNA polymerase II transcripts from as little as 5-10 ng of total RNA. This dramatic increase in sensitivity is achieved by specially designed, selectively degradable carrier RNA. We demonstrate the ability of SLIC-CAGE to generate data for genome-wide promoterome with 1000-fold less material than required by existing CAGE methods, by generating a complex, high-quality library from mouse embryonic day 11.5 primordial germ cells.
Cap 分析基因表达 (CAGE) 是一种用于全基因组定量映射 mRNA 5' 端的方法,可精确捕获单个核苷酸分辨率的转录起始位点。与高通量测序相结合,CAGE 彻底改变了我们对转录起始规则的理解,导致了新的核心启动子序列特征的发现,并在全基因组范围内发现了增强子的转录起始。CAGE 的最大限制是,即使是最近改进的版本(nAnT-iCAGE)仍然需要大量的总细胞 RNA(5 µg),这使其无法应用于稀缺的生物样本,如早期胚胎发育或稀有细胞类型的样本。在这里,我们提出了 SLIC-CAGE,这是一种从低至 5-10 ng 总 RNA 中捕获 RNA 聚合酶 II 转录物 5' 端的超低输入载体 CAGE 方法。这种灵敏度的显著提高是通过专门设计的、选择性降解的载体 RNA 实现的。我们通过从小鼠胚胎 11.5 天的原始生殖细胞中生成复杂、高质量的文库,证明了 SLIC-CAGE 能够以比现有 CAGE 方法少 1000 倍的材料生成全基因组启动子组数据的能力。