State Key Laboratory of Environmental and Biological Analysis, Department of Chemistry, Hong Kong Baptist University, Hong Kong, China.
Department of Biology, Hong Kong Baptist University, Hong Kong, China.
Nat Protoc. 2020 Sep;15(9):2813-2836. doi: 10.1038/s41596-020-0363-z. Epub 2020 Aug 3.
Several noncanonical initial nucleotides (NCINs) have been found to cap RNAs and possibly regulate RNA stability, transcription and translation. NAD is one of the NCINs that has recently been discovered to cap RNAs in a wide range of species. Identification of the NAD-capped RNAs (NAD-RNAs) could help to unveil the cap-mediated regulation mechanisms. We previously reported a method termed NAD tagSeq for genome-wide analysis of NAD-RNAs. NAD tagSeq is based on the previously published NAD captureSeq protocol, which applies an enzymatic reaction and a click chemistry reaction to label NAD-RNAs with biotin followed by enrichment with streptavidin resin and identification by RNA sequencing. In the current NAD tagSeq method, NAD-RNAs are labeled with a synthetic RNA tag and identified by direct RNA sequencing based on Oxford Nanopore technology. Compared to NAD captureSeq, NAD tagSeq provides a simpler procedure for direct sequencing of NAD-RNAs and noncapped RNAs and affords information on the whole sequence organization of NAD-RNAs and the ratio of NAD-RNAs to total transcripts. Furthermore, NAD-RNAs can be enriched by hybridizing a complementary DNA probe to the RNA tag, thus increasing the sequencing coverage of NAD-RNAs. The strategy of tagging RNAs with a synthetic RNA tag and identifying them by direct RNA sequencing might be employed in analyzing other NCIN-capped RNAs. The experimental procedure of NAD tagSeq, including RNA extraction, RNA tagging and direct RNA sequencing, takes ~5 d, and initial data analysis can be completed within 2 d.
已经发现了几种非规范起始核苷酸 (NCINs) 来帽化 RNA,并可能调节 RNA 的稳定性、转录和翻译。NAD 是最近发现的在多种物种中帽化 RNA 的 NCIN 之一。鉴定 NAD 帽化 RNA (NAD-RNA) 可以帮助揭示帽介导的调控机制。我们之前报道了一种称为 NAD tagSeq 的方法,用于全基因组分析 NAD-RNA。NAD tagSeq 基于先前发表的 NAD 捕获 Seq 协议,该协议应用酶反应和点击化学反应,用生物素标记 NAD-RNA,然后用链霉亲和素树脂富集,通过 RNA 测序进行鉴定。在当前的 NAD tagSeq 方法中,NAD-RNA 用合成的 RNA 标签标记,并基于 Oxford Nanopore 技术通过直接 RNA 测序进行鉴定。与 NAD captureSeq 相比,NAD tagSeq 为直接测序 NAD-RNA 和无帽 RNA 提供了更简单的程序,并提供了 NAD-RNA 的整个序列组织和 NAD-RNA 与总转录物的比例的信息。此外,通过将 cDNA 探针杂交到 RNA 标签上,可以富集 NAD-RNA,从而增加 NAD-RNA 的测序覆盖率。用合成 RNA 标签标记 RNA 并通过直接 RNA 测序鉴定它们的策略可能用于分析其他 NCIN 帽化 RNA。NAD tagSeq 的实验程序,包括 RNA 提取、RNA 标记和直接 RNA 测序,需要大约 5 天,初始数据分析可以在 2 天内完成。