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首页> 外文期刊>Nucleic Acids Research >Arginine methylation promotes translation repression activity of eIF4G-binding protein, Scd6
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Arginine methylation promotes translation repression activity of eIF4G-binding protein, Scd6

机译:精氨酸甲基化促进EIF4G结合蛋白,SCD6的翻译抑制活性

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Regulation of translation plays a critical role in determining mRNA fate. A new role was recently reported for a subset of RGG-motif proteins in repressing translation initiation by binding eIF4G1. However the signaling mechanism(s) that leads to spatial and temporal regulation of repression activity of RGG-motif proteins remains unknown. Here we report the role of arginine methylation in regulation of repression activity of Scd6, a conserved RGG-motif protein. We demonstrate that Scd6 gets arginine methylated at its RGG-motif and Hmt1 plays an important role in its methylation. We identify specific methylated arginine residues in the Scd6 RGG-motif in vivo. We provide evidence that methylation augments Scd6 repression activity. Arginine methylation defective (AMD) mutant of Scd6 rescues the growth defect caused by overexpression of Scd6, a feature of translation repressors in general. Live-cell imaging of the AMD mutant revealed that it is defective in inducing formation of stress granules. Live-cell imaging and pull-down results indicate that it fails to bind eIF4G1 efficiently. Consistent with these results, a strain lacking Hmt1 is also defective in Scd6-eIF4G1 interaction. Our results establish that arginine methylation augments Scd6 repression activity by promoting eIF4G1-binding. We propose that arginine methylation of translation repressors with RGG-motif could be a general modulator of their repression activity.
机译:翻译规则在确定mRNA命运时起着关键作用。最近通过结合EIF4G1抑制翻译引发的RGG-MOTIF蛋白的子集来报告新的作用。然而,导致RGG-MOTIF蛋白抑制活性的空间和时间调节的信号机构仍然未知。在这里,我们举报了精氨酸甲基化在SCD6的抑制活动调节中的作用,是保守的RGG-MOTIF蛋白。我们证明SCD6在其RGG-MOTIF中甲基化的精氨酸,HMT1在其甲基化中起重要作用。我们在体内鉴定SCD6 RGG-MOTIF中的特定甲基化精氨酸残基。我们提供了证据表明甲基化增强了SCD6抑制活动。 SCD6的精氨酸甲基化缺陷(AMD)突变体抵抗SCD6过表达引起的生长缺陷,一般翻译阻遏物的特征。 AMD突变体的活细胞成像显示,在诱导应激颗粒的形成方面有缺陷。 Live-Cell成像和下拉结果表明它未能有效地结合EIF4G1。与这些结果一致,缺乏HMT1的应变在SCD6-EIF4G1相互作用中也缺陷。我们的结果确定,通过促进EIF4G1结合,精氨酸甲基化增强了SCD6抑制活动。我们提出用RGG-MOTIF的翻译阻遏物的精氨酸甲基化可能是其抑制活动的一般调节剂。

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