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The nonstop decay and the RNA silencing systems operate cooperatively in plants

机译:不间断衰减和RNA沉默系统在植物中合作地运行

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Translation-dependent mRNA quality control systems protect the protein homeostasis of eukaryotic cells by eliminating aberrant transcripts and stimulating the decay of their protein products. Although these systems are intensively studied in animals, little is known about the translation-dependent quality control systems in plants. Here, we characterize the mechanism of nonstop decay (NSD) system in Nicotiana benthamiana model plant. We show that plant NSD efficiently degrades nonstop mRNAs, which can be generated by premature polyadenylation, and stop codon-less transcripts, which are produced by endonucleolytic cleavage. We demonstrate that in plants, like in animals, Pelota, Hbs1 and SKI2 proteins are required for NSD, supporting that NSD is an ancient and conserved eukaryotic quality control system. Relevantly, we found that NSD and RNA silencing systems cooperate in plants. Plant silencing predominantly represses target mRNAs through endonucleolytic cleavage in the coding region. Here we show that NSD is required for the elimination of 5' cleavage product of mi- or siRNA-guided silencing complex when the cleavage occurs in the coding region. We also show that NSD and nonsense-mediated decay (NMD) quality control systems operate independently in plants.
机译:翻译的mRNA质量控制系统通过消除异常转录物并刺激其蛋白质产品的衰减来保护真核细胞的蛋白质稳态。虽然这些系统在动物中进行了集中研究,但是关于植物中的平移依赖质量控制系统知之甚少。在这里,我们在尼加罗尼亚州Benthamiana模型植物中表征了不间断衰变(NSD)系统的机制。我们表明植物NSD有效地降解了不级别MRNA,其可以由过早的多腺苷酸化产生,并阻止通过内核核酸裂解产生的密码子的转录物。我们证明,在植物中,如动物,Pelota,HBS1和Ski2蛋白是NSD所必需的,支持NSD是一个古老和保守的真核性质量控制系统。相关,我们发现NSD和RNA沉默系统在植物中配合。植物沉默主要通过编码区中的内核溶解裂解抑制靶mRNA。在这里,我们表明,当在编码区域中发生切割时,消除5'裂解沉默复合物的5'切割产物所需的NSD是必需的。我们还表明,NSD和废话介导的衰减(NMD)质量控制系统在植物中独立运行。

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