首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: Dual Functions of Yeast tRNA Ligase in the Unfolded Protein Response: Unconventional Cytoplasmic Splicing of HAC1 Pre-mRNA Is Not Sufficient to Release Translational Attenuation
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A Highlights from MBoC Selection: Dual Functions of Yeast tRNA Ligase in the Unfolded Protein Response: Unconventional Cytoplasmic Splicing of HAC1 Pre-mRNA Is Not Sufficient to Release Translational Attenuation

机译:MBoC选择的亮点:酵母tRNA连接酶在未折叠的蛋白质反应中的双重功能:HAC1 Pre-mRNA的非常规胞质剪接不足以释放翻译衰减。

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The unfolded protein response (UPR) is an essential signal transduction to cope with protein-folding stress in the endoplasmic reticulum. In the yeast UPR, the unconventional splicing of HAC1 mRNA is a key step. Translation of HAC1 pre-mRNA ( HAC1 u mRNA) is attenuated on polysomes and restarted only after splicing upon the UPR. However, the precise mechanism of this restart remained unclear. Here we show that yeast tRNA ligase (Rlg1p/Trl1p) acting on HAC1 ligation has an unexpected role in HAC1 translation. An RLG1 homologue from Arabidopsis thaliana ( AtRLG1 ) substitutes for yeast RLG1 in tRNA splicing but not in the UPR. Surprisingly, AtRlg1p ligates HAC1 exons, but the spliced mRNA ( HAC1 i mRNA) is not translated efficiently. In the AtRLG1 cells, the HAC1 intron is circularized after splicing and remains associated on polysomes, impairing relief of the translational repression of HAC1i mRNA. Furthermore, the HAC1 5′ UTR itself enables yeast Rlg1p to regulate translation of the following ORF. RNA IP revealed that yeast Rlg1p is integrated in HAC1 mRNP, before Ire1p cleaves HAC1 u mRNA. These results indicate that the splicing and the release of translational attenuation of HAC1 mRNA are separable steps and that Rlg1p has pivotal roles in both of these steps.
机译:展开的蛋白质反应(UPR)是一种必需的信号转导,以应对内质网中的蛋白质折叠应力。在酵母UPR中,HAC1 mRNA的非常规剪接是关键步骤。在多核小体上,HAC1 pre-mRNA(HAC1 u mRNA)的翻译被减弱,并且仅在剪接UPR后才重新开始。但是,重新启动的确切机制仍不清楚。在这里,我们显示了作用于HAC1连接的酵母tRNA连接酶(Rlg1p / Trl1p)在HAC1翻译中具有意想不到的作用。来自拟南芥的RLG1同源物(AtRLG1)在tRNA剪接中取代了酵母RLG1,但在UPR中却没有。令人惊讶的是,AtRlg1p连接了HAC1外显子,但剪接的mRNA(HAC1 i mRNA)没有有效翻译。在AtRLG1细胞中,HAC1内含子在剪接后被环化并保持与多核糖体的结合,从而削弱了HAC1 i mRNA的翻译抑制作用。此外,HAC1 5'UTR本身使酵母Rlg1p能够调节以下ORF的翻译。 RNA IP显示,在Ire1p切割HAC1 u mRNA之前,酵母Rlg1p已整合到HAC1 mRNP中。这些结果表明HAC1 mRNA的剪接和翻译衰减的释放是可分离的步骤,并且Rlg1p在这两个步骤中都具有关键作用。

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