Howard Hughes Medical Institute (HHMI), Department of Oncological Sciences, Huntsman Cancer Institute, University of Utah School of Medicine, Salt Lake City, Utah, USA.
Nat Protoc. 2014 Feb;9(2):337-61. doi: 10.1038/nprot.2014.014. Epub 2014 Jan 16.
Cytosine methylation within RNA is common, but its full scope and functions are poorly understood, as the RNA targets of most mammalian cytosine RNA methyltransferases (m(5)C-RMTs) remain uncharacterized. To enable their characterization, we developed a mechanism-based method for transcriptome-wide m(5)C-RMT target profiling. All characterized mammalian m(5)C-RMTs form a reversible covalent intermediate with their cytosine substrate-a covalent linkage that is trapped when conducted on the cytosine analog 5-azacytidine (5-aza-C). We used this property to develop Aza-immunoprecipitation (Aza-IP), a methodology to form stable m(5)C-RMT-RNA linkages in cell culture, followed by IP and high-throughput sequencing, to identify direct RNA substrates of m(5)C-RMTs. Remarkably, a cytosine-to-guanine (C→G) transversion occurs specifically at target cytosines, allowing the simultaneous identification of the precise target cytosine within each RNA. Thus, Aza-IP reports only direct RNA substrates and the C→G transversion provides an important criterion for target cytosine identification, which is not available in alternative approaches. Here we present a step-by-step protocol for Aza-IP and downstream analysis, designed to reveal identification of substrate RNAs and precise cytosine targets of m(5)C-RMTs. The entire protocol takes 40-50 d to complete.
RNA 中的胞嘧啶甲基化很常见,但由于大多数哺乳动物胞嘧啶 RNA 甲基转移酶 (m(5)C-RMTs) 的 RNA 靶标尚未得到充分描述,因此其全貌和功能仍知之甚少。为了能够对其进行表征,我们开发了一种基于机制的方法来进行全转录组 m(5)C-RMT 靶标分析。所有已鉴定的哺乳动物 m(5)C-RMT 与它们的胞嘧啶底物形成可逆的共价中间产物——当在胞嘧啶类似物 5-氮杂胞苷 (5-aza-C) 上进行时,这种共价键会被捕获。我们利用这一特性开发了 Aza-免疫沉淀 (Aza-IP),这是一种在细胞培养中形成稳定 m(5)C-RMT-RNA 键的方法,随后进行 IP 和高通量测序,以鉴定 m(5)C-RMT 的直接 RNA 底物。值得注意的是,靶标胞嘧啶处会特异性地发生胞嘧啶到鸟嘌呤的颠换 (C→G),从而能够在每个 RNA 中同时鉴定出精确的靶标胞嘧啶。因此,Aza-IP 仅报告直接的 RNA 底物,并且 C→G 颠换为靶标胞嘧啶的鉴定提供了一个重要标准,这在其他方法中是不可用的。本文提供了 Aza-IP 及下游分析的分步操作方案,旨在揭示 m(5)C-RMT 底物 RNA 和精确靶标胞嘧啶的鉴定。整个方案需要 40-50 天才能完成。