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The Dynamic of the Splicing of bZIP60 and the Proteins Encoded by the Spliced and Unspliced mRNAs Reveals Some Unique Features during the Activation of UPR in Arabidopsis thaliana

机译:在拟南芥中UPR激活过程中bZIP60的剪接动态以及剪接和未剪接的mRNA编码的蛋白质揭示了一些独特的特征。

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摘要

The unfolded protein response (UPR) is a signaling pathway that is activated when the workload of the endoplasmic reticulum (ER) is surpassed. IRE1 is a sensor involved in triggering the UPR and plays a key role in the unconventional splicing of an mRNA leading to the formation of a transcription factor that up-regulates the transcription of genes that play a role in restoring the homeostasis in the ER. In plants, bZIP60 is the substrate for IRE1; however, questions such as what is the dynamics of the splicing of bZIP60 and the fate of the proteins encoded by the spliced and unspliced forms of the mRNA, remain unanswered. In the present work, we analyzed the processing of bZIP60 by determining the levels of the spliced form mRNA in plants exposed to different conditions that trigger UPR. The results show that induction of ER stress increases the content of the spliced form of bZIP60 (bZIP60s) reaching a maximum, that depending on the stimuli, varied between 30 min or 2 hrs. In most cases, this was followed by a decrease in the content. In contrast to other eukaryotes, the splicing never occurred to full extent. The content of bZIP60s changed among different organs upon induction of the UPR suggesting that splicing is regulated differentially throughout the plant. In addition, we analyzed the distribution of a GFP-tagged version of bZIP60 when UPR was activated. A good correlation between splicing of bZIP60 and localization of the protein in the nucleus was observed. No fluorescence was observed under basal conditions, but interestingly, the fluorescence was recovered and found to co-localize with an ER marker upon treatment with an inhibitor of the proteasome. Our results indicate that the dynamics of bZIP60, both the mRNA and the protein, are highly dynamic processes which are tissue-specific and stimulus-dependent.
机译:当超过内质网(ER)的工作量时,未折叠的蛋白应答(UPR)是一个信号通路。 IRE1是涉及触发UPR的传感器,在mRNA的非常规剪接中起关键作用,导致形成转录因子,该转录因子上调在恢复ER稳态中起作用的基因的转录。在植物中,bZIP60是IRE1的底物。但是,诸如bZIP60的剪接动力学以及mRNA的剪接和非剪接形式编码的蛋白质的命运如何等问题仍未得到解答。在目前的工作中,我们通过确定在暴露于不同条件下触发UPR的植物中剪接形式mRNA的水平来分析bZIP60的加工过程。结果表明,ER应力的诱导使bZIP60的剪接形式(bZIP60s)的含量达到最大值,该最大值取决于刺激,在30分钟或2小时之间变化。在大多数情况下,其次是内容的减少。与其他真核生物相比,剪接从未完全发生。 UPR诱导后,不同器官之间的bZIP60s含量发生变化,这表明整个植物的剪接受到不同的调节。此外,我们分析了激活UPR时带有GFP标签的bZIP60版本的分布。观察到bZIP60的剪接与蛋白在细胞核中的定位之间具有良好的相关性。在基础条件下未观察到荧光,但是有趣的是,在用蛋白酶体抑制剂处理后,荧光被回收并发现与ER标记共定位。我们的结果表明,bZIP60的动力学(无论是mRNA还是蛋白)都是高度动态的过程,具有组织特异性和刺激依赖性。

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