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Tudor Staphylococcal Nuclease Links Formation of Stress Granules and Processing Bodies with mRNA Catabolism in Arabidopsis

机译:都铎葡萄球菌核酸酶链接拟南芥中应力颗粒和加工体与mRNA代谢的形成。

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摘要

Tudor Staphylococcal Nuclease (TSN or Tudor-SN; also known as SND1) is an evolutionarily conserved protein involved in the transcriptional and posttranscriptional regulation of gene expression in animals. Although TSN was found to be indispensable for normal plant development and stress tolerance, the molecular mechanisms underlying these functions remain elusive. Here, we show that Arabidopsis thaliana TSN is essential for the integrity and function of cytoplasmic messenger ribonucleoprotein () complexes called stress granules () and processing bodies (), sites of posttranscriptional gene regulation during stress. TSN associates with following their microtubule-dependent assembly and plays a scaffolding role in both and . The enzymatically active tandem repeat of four SN domains is crucial for targeting TSN to the cytoplasmic mRNA complexes and is sufficient for the cytoprotective function of TSN during stress. Furthermore, our work connects the cytoprotective function of TSN with its positive role in stress-induced mRNA decapping. While stress led to a pronounced increase in the accumulation of uncapped mRNAs in wild-type plants, this increase was abrogated in TSN knockout plants. Taken together, our results establish TSN as a key enzymatic component of the catabolic machinery responsible for the processing of mRNAs in the cytoplasmic complexes during stress.
机译:Tudor葡萄球菌核酸酶(TSN或Tudor-SN;也称为SND1)是一种进化保守的蛋白质,参与动物基因表达的转录和转录后调控。尽管发现TSN对于正常植物发育和胁迫耐受性是必不可少的,但这些功能背后的分子机制仍然难以捉摸。在这里,我们显示拟南芥TSN对于胞质信使核糖核蛋白()复杂体的完整性和功能至关重要,这种复合体称为应激颗粒()和加工体(),在应激过程中转录后基因调控的位点。 TSN与其遵循其微管依赖性组装相关,并且在和中均发挥支架作用。四个SN结构域的酶促串联重复序列对于将TSN靶向胞质mRNA复合物至关重要,并且对于应激期间TSN的细胞保护功能也足够。此外,我们的工作将TSN的细胞保护功能与其在应激诱导的mRNA脱盖中的积极作用联系起来。尽管压力导致野生型植物中未封端的mRNA积累明显增加,但这种增加在TSN基因敲除植物中被取消。综上所述,我们的研究结果将TSN确立为分解代谢机制的关键酶成分,该机制负责应激过程中胞质复合物中的mRNA加工。

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