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Extensive translation of circular RNAs driven by N6-methyladenosine

机译:N6-甲基腺苷驱动的环状RNA的广泛翻译

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摘要

Extensive pre-mRNA back-splicing generates numerous circular RNAs (circRNAs) in human transcriptome. However, the biological functions of these circRNAs remain largely unclear. Here we report that N6-methyladenosine (m6A), the most abundant base modification of RNA, promotes efficient initiation of protein translation from circRNAs in human cells. We discover that consensus m6A motifs are enriched in circRNAs and a single m6A site is sufficient to drive translation initiation. This m6A-driven translation requires initiation factor eIF4G2 and m6A reader YTHDF3, and is enhanced by methyltransferase METTL3/14, inhibited by demethylase FTO, and upregulated upon heat shock. Further analyses through polysome profiling, computational prediction and mass spectrometry reveal that m6A-driven translation of circRNAs is widespread, with hundreds of endogenous circRNAs having translation potential. Our study expands the coding landscape of human transcriptome, and suggests a role of circRNA-derived proteins in cellular responses to environmental stress.
机译:广泛的前mRNA反向剪接在人类转录组中产生许多环状RNA(circRNA)。但是,这些circRNA的生物学功能仍不清楚。在这里我们报道了N 6 -甲基腺苷(m 6 A),RNA最丰富的碱基修饰,可促进人细胞中circRNA的蛋白质翻译的有效启动。我们发现,在circRNA中共有m 6 A基序,单个m 6 A位点足以驱动翻译起始。这种由m 6 A驱动的翻译需要起始因子eIF4G2和m 6 A阅读器YTHDF3,并被甲基转移酶METTL3 / 14增强,被脱甲基酶FTO抑制并受热上调休克。通过多核糖体谱分析,计算预测和质谱的进一步分析表明,m 6 A驱动的circRNA的翻译是广泛的,数百种内源性circRNA具有翻译潜力。我们的研究扩大了人类转录组的编码范围,并提出了circRNA衍生的蛋白在细胞对环境胁迫的反应中的作用。

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