Ayadi Lilia, Motorin Yuri, Marchand Virginie
IMoPA UMR7365 CNRS-Lorraine University, BioPole Lorraine University, 9 Avenue de la Foret de Haye, 54505, Vandoeuvre-les-Nancy, France.
Next-Generation Sequencing Core Facility, FR3209 BMCT, CNRS-Lorraine University, BioPole Lorraine University, 9 Avenue de la Foret de Haye, 54505, Vandoeuvre-les-Nancy, France.
Methods Mol Biol. 2018;1649:29-48. doi: 10.1007/978-1-4939-7213-5_2.
RNA 2'-O-methylation is one of the ubiquitous nucleotide modifications found in many RNA types from bacteria, archaea, and eukarya. We and others have recently published accurate and sensitive detection of these modifications on native RNA at a single base resolution by high-throughput sequencing technologies. Relative quantification of these modifications is still under progress and would probably reduce the number of false positives due to 3D RNA structure. Therefore, here, we describe a reliable and optimized protocol for quantification of 2'-O-Methylations based on alkaline fragmentation of RNA coupled to a commonly used ligation approach followed by Illumina sequencing. For this purpose, we describe how to prepare in vitro transcribed yeast 18S and 25S rRNA used as a reference for unmodified rRNAs and to compare them to purified 18S and 25S rRNA from yeast total RNA preparation. These reconstructed rRNA mixes were combined at different ratios and processed for RiboMethseq protocol.This technique will be applicable for routine parallel treatment of biological and clinical samples to decipher the functions of 2'-O-methylations in normal and pathologic processes or during development.
RNA 2'-O-甲基化是在细菌、古细菌和真核生物的多种RNA类型中普遍存在的核苷酸修饰之一。我们和其他研究人员最近发表了通过高通量测序技术在单碱基分辨率下对天然RNA上这些修饰进行准确灵敏检测的方法。这些修饰的相对定量仍在进行中,并且可能会减少由于3D RNA结构导致的假阳性数量。因此,在此我们描述一种基于RNA碱性片段化并结合常用连接方法随后进行Illumina测序的可靠且优化的2'-O-甲基化定量方案。为此,我们描述了如何制备体外转录的酵母18S和25S rRNA用作未修饰rRNA的参考,并将它们与从酵母总RNA制备物中纯化的18S和25S rRNA进行比较。这些重构的rRNA混合物以不同比例混合,并按照RiboMethseq方案进行处理。该技术将适用于对生物和临床样品进行常规平行处理,以解读2'-O-甲基化在正常和病理过程或发育过程中的功能。