生物
核糖核酸
5-甲基胞嘧啶
基因
DNA甲基化
甲基化
编码区
信使核糖核酸
转移RNA
RNA甲基化
转录组
分子生物学
遗传学
拟南芥
甲基转移酶
基因表达
突变体
作者
Xuean Cui,Zhe Liang,Lisha Shen,Qian Zhang,Shengjie Bao,Yuke Geng,Bin Zhang,Vonny I. Leo,Leah A. Vardy,Tiegang Lu,Xiaofeng Gu,Hao Yu
出处
期刊:Molecular Plant
[Elsevier]
日期:2017-11-01
卷期号:10 (11): 1387-1399
被引量:185
标识
DOI:10.1016/j.molp.2017.09.013
摘要
5-Methylcytosine (m5C) is a well-characterized DNA modification, and is also predominantly reported in abundant non-coding RNAs in both prokaryotes and eukaryotes. However, the distribution and biological functions of m5C in plant mRNAs remain largely unknown. Here, we report transcriptome-wide profiling of RNA m5C in Arabidopsis thaliana by applying m5C RNA immunoprecipitation followed by a deep-sequencing approach (m5C-RIP-seq). LC–MS/MS and dot blot analyses reveal a dynamic pattern of m5C mRNA modification in various tissues and at different developmental stages. m5C-RIP-seq analysis identified 6045 m5C peaks in 4465 expressed genes in young seedlings. We found that m5C is enriched in coding sequences with two peaks located immediately after start codons and before stop codons, and is associated with mRNAs with low translation activity. We further demonstrated that an RNA (cytosine-5)-methyltransferase, tRNA-specific methyltransferase 4B (TRM4B), exhibits m5C RNA methyltransferase activity. Mutations in TRM4B display defects in root development and decreased m5C peaks. TRM4B affects the transcript levels of the genes involved in root development, which is positively correlated with their mRNA stability and m5C levels. Our results suggest that m5C in mRNA is a new epitranscriptome marker inArabidopsis, and that regulation of this modification is an integral part of gene regulatory networks underlying plant development.
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