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使用纳米孔天然 RNA 测序读取 16S 核糖体 RNA 中的规范和修饰碱基。

Reading canonical and modified nucleobases in 16S ribosomal RNA using nanopore native RNA sequencing.

机构信息

UC Santa Cruz Genomics Institute, University of California, Santa Cruz, California, United States of America.

Oxford Nanopore Technologies, Oxford, United Kingdom.

出版信息

PLoS One. 2019 May 16;14(5):e0216709. doi: 10.1371/journal.pone.0216709. eCollection 2019.

Abstract

The ribosome small subunit is expressed in all living cells. It performs numerous essential functions during translation, including formation of the initiation complex and proofreading of base-pairs between mRNA codons and tRNA anticodons. The core constituent of the small ribosomal subunit is a 1.5 kb RNA strand in prokaryotes (16S rRNA) and a homologous ~1.8 kb RNA strand in eukaryotes (18S rRNA). Traditional sequencing-by-synthesis (SBS) of rRNA genes or rRNA cDNA copies has achieved wide use as a 'molecular chronometer' for phylogenetic studies, and as a tool for identifying infectious organisms in the clinic. However, epigenetic modifications on rRNA are erased by SBS methods. Here we describe direct MinION nanopore sequencing of individual, full-length 16S rRNA absent reverse transcription or amplification. As little as 5 picograms (10 attomole) of purified E. coli 16S rRNA was detected in 4.5 micrograms of total human RNA. Nanopore ionic current traces that deviated from canonical patterns revealed conserved E. coli 16S rRNA 7-methylguanosine and pseudouridine modifications, and a 7-methylguanosine modification that confers aminoglycoside resistance to some pathological E. coli strains.

摘要

核糖体小亚基存在于所有活细胞中。它在翻译过程中发挥着许多重要的功能,包括起始复合物的形成和 mRNA 密码子与 tRNA 反密码子之间碱基对的校对。小核糖体亚基的核心组成部分是原核生物中约 1.5kb 的 RNA 链(16S rRNA)和真核生物中约 1.8kb 的同源 RNA 链(18S rRNA)。传统的 rRNA 基因或 rRNA cDNA 拷贝的测序合成(SBS)已广泛用作系统发育研究的“分子钟”,并作为临床鉴定感染性生物的工具。然而,SBS 方法会清除 rRNA 上的表观遗传修饰。在这里,我们描述了对单个全长 16S rRNA 进行直接 MinION 纳米孔测序,无需逆转录或扩增。在 4.5 微克总人 RNA 中,我们检测到了低至 5 皮克(~10 飞摩尔)的纯化大肠杆菌 16S rRNA。偏离规范模式的纳米孔离子电流轨迹揭示了保守的大肠杆菌 16S rRNA 7-甲基鸟苷和假尿嘧啶修饰,以及赋予某些致病性大肠杆菌菌株氨基糖苷类耐药性的 7-甲基鸟苷修饰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a450/6522004/98b739575e91/pone.0216709.g001.jpg

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