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The YTH Domain Protein ECT2 Is an m6A Reader Required for Normal Trichome Branching in Arabidopsis

机译:YTH域蛋白ECT2是拟南芥中正常Trichome分支所需的m6A读码器

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摘要

Methylations at position N6 of internal adenosines (m6As) are the most abundant and widespread mRNA modifications. These modifications play crucial roles in reproduction, growth, and development by controlling gene expression patterns at the posttranscriptional level. Their function is decoded by readers that share the YTH domain, which forms a hydrophobic pocket that directly accommodates the m6A residues. While the physiological and molecular functions of YTH readers have been extensively studied in animals, little is known about plant readers, even though m6As are crucial for plant survival and development. Viridiplantae contains high numbers of YTH domain proteins. Here, we performed comprehensive evolutionary analysis of YTH domain proteins and demonstrated that they are highly likely to be actual readers with redundant as well as specific functions. We also show that the ECT2 protein from Arabidopsis thaliana binds to m6A-containing RNAs in vivo and that this property relies on the m6A binding pocket carried by its YTH domain. ECT2 is cytoplasmic and relocates to stress granules upon heat exposure, suggesting that it controls mRNA fate in the cytosol. Finally, we demonstrate that ECT2 acts to decode the m6A signal in the trichome and is required for their normal branching through controlling their ploidy levels.
机译:内部腺苷的N 6 位(m 6 As)甲基化是最丰富,分布最广泛的mRNA修饰。这些修饰通过在转录后水平上控制基因表达模式,在繁殖,生长和发育中起关键作用。共有YTH结构域的阅读器对它们的功能进行了解码,该结构域形成了一个直接容纳m 6 A残基的疏水口袋。尽管在动物中对YTH阅读器的生理和分子功能进行了广泛的研究,但即使m 6 As对植物存活和发育至关重要,对植物阅读器的了解却很少。茄科植物含有大量的YTH结构域蛋白。在这里,我们对YTH结构域蛋白进行了全面的进化分析,并证明它们很可能是具有冗余和特定功能的实际阅读器。我们还显示,拟南芥中的ECT2蛋白在体内与包含m 6 A的RNA结合,并且该性质依赖于其YTH携带的m 6 A结合口袋域。 ECT2具有细胞质,受热后会重新定位成应激颗粒,表明它控制着细胞质中的mRNA命运。最后,我们证明了ECT2可以对毛状体中的m 6 A信号进行解码,并通过控制其倍性水平来正常分支。

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