生物
脱甲基酶
甲基转移酶
N6-甲基腺苷
核糖核酸
转移RNA
生物化学
遗传学
甲基化
基因
表观遗传学
作者
Zhen Xia,Min Tang,Jiayan Ma,Hongyan Zhang,Ryan C. Gimple,Briana C. Prager,Hongzhen Tang,Chongran Sun,Fuyi Liu,Lin Peng,Yutang Mei,Ruoxin Du,Jeremy N. Rich,Qi Xie
摘要
N6-methyladenosine (m6A) is a common modification on endogenous RNA transcripts in mammalian cells. Technologies to precisely modify the RNA m6A levels at specific transcriptomic loci empower interrogation of biological functions of epitranscriptomic modifications. Here, we developed a bidirectional dCasRx epitranscriptome editing platform composed of a nuclear-localized dCasRx conjugated with either a methyltransferase, METTL3, or a demethylase, ALKBH5, to manipulate methylation events at targeted m6A sites. Leveraging this platform, we specifically and efficiently edited m6A modifications at targeted sites, reflected in gene expression and cell proliferation. We employed the dCasRx epitranscriptomic editor system to elucidate the molecular function of m6A-binding proteins YTHDF paralogs (YTHDF1, YTHDF2 and YTHDF3), revealing that YTHDFs promote m6A-mediated mRNA degradation. Collectively, our dCasRx epitranscriptome perturbation platform permits site-specific m6A editing for delineating of functional roles of individual m6A modifications in the mammalian epitranscriptome.
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