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酵母 Rab GTPase Ypt1 通过调节 HAC1 RNA 的稳定性来调节未折叠蛋白反应动力学。

The yeast Rab GTPase Ypt1 modulates unfolded protein response dynamics by regulating the stability of HAC1 RNA.

机构信息

Department of Biochemistry, Stanford University School of Medicine, Stanford, CA, USA.

出版信息

PLoS Genet. 2012;8(7):e1002862. doi: 10.1371/journal.pgen.1002862. Epub 2012 Jul 26.

Abstract

The unfolded protein response (UPR) is a conserved mechanism that mitigates accumulation of unfolded proteins in the ER. The yeast UPR is subject to intricate post-transcriptional regulation, involving recruitment of the RNA encoding the Hac1 transcription factor to the ER and its unconventional splicing. To investigate the mechanisms underlying regulation of the UPR, we screened the yeast proteome for proteins that specifically interact with HAC1 RNA. Protein microarray experiments revealed that HAC1 interacts specifically with small ras GTPases of the Ypt family. We characterized the interaction of HAC1 RNA with one of these proteins, the yeast Rab1 homolog Ypt1. We found that Ypt1 protein specifically associated in vivo with unspliced HAC1 RNA. This association was disrupted by conditions that impaired protein folding in the ER and induced the UPR. Also, the Ypt1-HAC1 interaction depended on IRE1 and ADA5, the two genes critical for UPR activation. Decreasing expression of the Ypt1 protein resulted in a reduced rate of HAC1 RNA decay, leading to significantly increased levels of both unspliced and spliced HAC1 RNA, and delayed attenuation of the UPR, when ER stress was relieved. Our findings establish that Ypt1 contributes to regulation of UPR signaling dynamics by promoting the decay of HAC1 RNA, suggesting a potential regulatory mechanism for linking vesicle trafficking to the UPR and ER homeostasis.

摘要

未折叠蛋白反应(UPR)是一种保守的机制,可减轻内质网中未折叠蛋白的积累。酵母 UPR 受到复杂的转录后调控,涉及到 Hac1 转录因子编码 RNA 在内质网上的募集和其非常规剪接。为了研究 UPR 调控的机制,我们筛选了酵母蛋白质组中与 HAC1 RNA 特异性相互作用的蛋白质。蛋白质微阵列实验表明,HAC1 与 Ypt 家族的小 ras GTP 酶特异性相互作用。我们描述了 HAC1 RNA 与其中一种蛋白质,酵母 Rab1 同源物 Ypt1 的相互作用。我们发现 Ypt1 蛋白在体内特异性地与未剪接的 HAC1 RNA 相关联。这种关联被破坏了内质网中蛋白质折叠受损和 UPR 诱导的条件。此外,Ypt1-HAC1 相互作用依赖于 IRE1 和 ADA5,这两个基因对 UPR 激活至关重要。降低 Ypt1 蛋白的表达导致 HAC1 RNA 降解率降低,导致未剪接和剪接的 HAC1 RNA 水平显著增加,并在 ER 应激缓解时延迟 UPR 的衰减。我们的发现表明,Ypt1 通过促进 HAC1 RNA 的降解来促进 UPR 信号转导的动态调节,为将囊泡运输与 UPR 和 ER 稳态联系起来提供了潜在的调节机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66db/3406009/7f6e90fd25f4/pgen.1002862.g001.jpg

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