Institute of Human Virology, Zhongshan School of Medicine, Sun Yat-Sen University, Guangzhou, 510080, China; Clinic Research Center, The Second Affiliated Hospital, University of South China, Hengyang, 421001, China.
Institute of Human Virology, Zhongshan School of Medicine, Sun Yat-Sen University, Guangzhou, 510080, China.
Biochem Biophys Res Commun. 2019 Jan 22;508(4):1286-1290. doi: 10.1016/j.bbrc.2018.12.043. Epub 2018 Dec 17.
N6-methyladenosine (m6A) is the most prevalent mRNA modification in higher eukaryotes. Recent studies suggest that m6A has a regulatory role in mRNA degradation and translation initiation or efficiency, involving in cell fate determination in yeast, plants, and stem cells of mammalian. Trypanosoma brucei (T. brucei) regulates gene expression through post-transcriptional fashion, which heavily relies on mRNA cis-motifs. However, internal mRNA modification in T. brucei has not been reported yet. Here we found m6A modification is abundant in T. brucei and presented a transcriptome wide methylome of m6A in both life stages of T. brucei. We identified 355 and 95 peaks in procyclic form and blood stream form trypanosomes respectively. A consensus motif of CAU was shared in both life stages of T. brucei. mRNA abundance of m6A-containing genes is higher in procyclic form and tend to be down-regulated in bloodstream form trypanosomes. Furthermore, m6A-containing transcripts harbor relative longer half-lives, and are enriched in pathways of cell morphology and movement in procyclic form trypanosomes. By m6A-containing RNA pulldown in both life stages, we identified TRRM2 as a potential m6A reader in T. brucei. Uncovering the m6A methylome and its binding proteins may provide a new post-transcriptional regulatory pathway in T. brucei.
N6-甲基腺嘌呤(m6A)是高等真核生物中最普遍的 mRNA 修饰。最近的研究表明,m6A 在 mRNA 降解和翻译起始或效率中具有调节作用,涉及酵母、植物和哺乳动物干细胞中的细胞命运决定。布氏锥虫(T. brucei)通过转录后方式调节基因表达,这严重依赖于 mRNA 顺式基序。然而,布氏锥虫内部 mRNA 修饰尚未报道。在这里,我们发现 m6A 修饰在布氏锥虫中很丰富,并在布氏锥虫的两个生命阶段中进行了 m6A 的转录组甲基组分析。我们分别在布氏锥虫的循环型和血液型中鉴定到 355 和 95 个峰。CAU 共识基序在布氏锥虫的两个生命阶段中都存在。m6A 含基因的 mRNA 丰度在循环型中较高,而在血液型中倾向于下调。此外,m6A 含转录本的半衰期相对较长,并且在循环型锥虫中细胞形态和运动的途径中富集。通过在两个生命阶段进行 m6A 含 RNA 下拉实验,我们鉴定出 TRRM2 是布氏锥虫中潜在的 m6A 阅读器。揭示 m6A 甲基组及其结合蛋白可能为布氏锥虫提供新的转录后调控途径。