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首页> 外文期刊>Nature Communications >m6A modification of a 3′ UTR site reduces RME1 mRNA levels to promote meiosis
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m6A modification of a 3′ UTR site reduces RME1 mRNA levels to promote meiosis

机译:M6A修饰3'UTR部位减少了RME1 mRNA水平以促进减数分裂

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摘要

Despite the vast number of modification sites mapped within mRNAs, known examples of consequential mRNA modifications remain rare. Here, we provide multiple lines of evidence to show that Ime4p, an N6-methyladenosine (msup6/supA) methyltransferase required for meiosis in yeast, acts by methylating a site in the 3' UTR of the mRNA encoding Rme1p, a transcriptional repressor of meiosis. Consistent with this mechanism, genetic analyses reveal that IME4 functions upstream of RME1. Transcriptome-wide, RME1 is the primary message that displays both increased methylation and reduced expression in an Ime4p-dependent manner. In yeast strains for which IME4 is dispensable for meiosis, a natural polymorphism in the RME1 promoter reduces RME1 transcription, obviating the requirement for methylation. Mutation of a single msup6/supA site in the RME1 3' UTR increases Rme1p repressor production and reduces meiotic efficiency. These results reveal the molecular and physiological consequences of a modification in the 3' UTR of an mRNA.
机译:尽管在MRNA内映射的大量修改位点,但后续mRNA修饰的已知示例仍然罕见。在这里,我们提供多种证据表明,酵母中减数分裂所需的IME4P,N6-甲基腺苷(M 6 A)甲基转移酶通过甲基化MRNA编码的3'UTR中的部位作用RME1P,MeIosis的转录压缩机。与这种机制一致,遗传分析显示IME4在RME1上游的功能。转录组宽的,RME1是以IME4P依赖性方式显示增加的甲基化和表达式的主要消息。在酵母菌株中,IME4可分配用于减数分裂,RME1启动子中的天然多态性降低了RME1转录,避免了甲基化的要求。 RME1 3'UTR中的单个M 6 的突变增加了RME1p阻遏物的生产并降低了减少效率。这些结果揭示了mRNA的3'UTR中的修饰的分子和生理结果。

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