核糖核酸
RNA甲基化
生物
信使核糖核酸
甲基转移酶
N6-甲基腺苷
核酸结构
小核RNA
分子生物学
RNA结合蛋白
内含子
细胞生物学
非编码RNA
生物化学
甲基化
基因
作者
Miki Imanishi,Tamaki Endoh,Yiwei Ling,Shujiro Okuda
标识
DOI:10.1002/cbic.202500006
摘要
N6‐methyladenosine (m6A) is the most abundant RNA modification in mRNA and regulates various biological processes. The RNA‐binding properties of m6A writer proteins play an important role in determining RNA modification sites. METTL3 and METTL14 form the core of the m6A writer complex, with METTL3 as the catalytic methyltransferase and METTL14 as the RNA‐binding scaffold. Thus far, the comprehensive RNA binding properties of METTL3/14 remain unknown. Using RNA‐capturing microsphere particles (R‐CAMPs), immobilizing RNA fragments derived from endogenous RNAs of human lung carcinoma cells, we isolated RNA fragments that interacted with the METTL3/14 methyltransferase domain. Bioinformatics analysis revealed that the pool of isolated sequences contained significantly more regions with the potential to form RNA G‐quadruplexes (rG4s) than the randomly extracted RNA sequence pool and that the (GGA) repeat sequences were most enriched. CD spectroscopy, gel mobility shift assays, and methylation experiments demonstrated that METTL3/14 binds to RNA sequences containing (GGA) repeats that form rG4 structure much stronger than RNAs that do not form rG4s. This study shows the potential of RNA G‐quadruplex structures as a modulator of epitranscriptomic modification of m6As.
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