Maeda Norihiro, Nishiyori Hiromi, Nakamura Mari, Kawazu Chika, Murata Mitsuyoshi, Sano Hiromi, Hayashida Kengo, Fukuda Shiro, Tagami Michihira, Hasegawa Akira, Murakami Kayoko, Schroder Kate, Irvine Katharine, Hume David, Hayashizaki Yoshihide, Carninci Piero, Suzuki Harukazu
Advanced Science Institute, RIKEN Wako Main Campus, Saitama, Japan.
Biotechniques. 2008 Jul;45(1):95-7. doi: 10.2144/000112814.
CAGE (cap analysis of gene expression) is a method for identifying transcription start sites by sequencing the first 20 or 21 nucleotides from the 5' end of capped transcripts, allowing genome-wide promoter analyses to be performed. The potential of the CAGE as a form of expression profiling was limited previously by sequencing technology and the labor-intensive protocol. Here we describe an improved CAGE method for use with a next generation sequencer. This modified method allows the identification of the RNA source of each CAGE tag within a pooled library by introducing DNA tags (barcodes). The method not only drastically improves the sequencing capacity, but also contributes to savings in both time and budget. Additionally, this pooled CAGE tag method enables the dynamic changes in promoter usage and gene expression to be monitored.
CAGE(基因表达的帽分析)是一种通过对带帽转录本5'端的前20或21个核苷酸进行测序来识别转录起始位点的方法,从而能够进行全基因组范围的启动子分析。CAGE作为一种表达谱分析形式的潜力以前受到测序技术和劳动密集型方案的限制。在此,我们描述一种用于新一代测序仪的改进型CAGE方法。这种改进方法通过引入DNA标签(条形码),能够在混合文库中识别每个CAGE标签的RNA来源。该方法不仅极大地提高了测序能力,还有助于节省时间和预算。此外,这种混合CAGE标签方法能够监测启动子使用情况和基因表达的动态变化。