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多胺响应性核糖体在AdoMetDC1基因上游开放阅读框的终止密码子处停滞,触发拟南芥中的无义介导的mRNA降解。

Polyamine-responsive ribosomal arrest at the stop codon of an upstream open reading frame of the AdoMetDC1 gene triggers nonsense-mediated mRNA decay in Arabidopsis thaliana.

作者信息

Uchiyama-Kadokura Naoko, Murakami Karin, Takemoto Mariko, Koyanagi Naoto, Murota Katsunori, Naito Satoshi, Onouchi Hitoshi

机构信息

Graduate School of Life Science, Hokkaido University, Sapporo, 060-0810 Japan Present address: Chifure Corporation, Kawagoe, 350-0833 Japan.

Graduate School of Agriculture, Hokkaido University, Sapporo, 060-8589 Japan.

出版信息

Plant Cell Physiol. 2014 Sep;55(9):1556-67. doi: 10.1093/pcp/pcu086. Epub 2014 Jun 14.

Abstract

During mRNA translation, nascent peptides with certain specific sequences cause arrest of ribosomes that have synthesized themselves. In some cases, such ribosomal arrest is coupled with mRNA decay. In yeast, mRNA quality control systems have been shown to be involved in mRNA decay associated with ribosomal arrest. However, a link between ribosomal arrest and mRNA quality control systems has not been found in multicellular organisms. In this study, we aimed to explore the relationship between ribosomal arrest and mRNA decay in plants. For this purpose, we used an upstream open reading frame (uORF) of the Arabidopsis thaliana AdoMetDC1 gene, in which the uORF-encoded peptide is involved in polyamine-responsive translational repression of the main coding sequence. Our in vitro analyses revealed that the AdoMetDC1 uORF-encoded peptide caused ribosomal arrest at the uORF stop codon in response to polyamine. Using transgenic calli harboring an AdoMetDC1 uORF-containing reporter gene, we showed that polyamine promoted mRNA decay in a uORF sequence-dependent manner. These results suggest that the polyamine-responsive ribosomal arrest mediated by the uORF-encoded peptide is coupled with mRNA decay. Our results also showed that the polyamine-responsive acceleration of mRNA decay was compromised by defects in factors that are essential for nonsense-mediated mRNA decay (NMD), an mRNA quality control system that degrades mRNAs with premature stop codons, suggesting that NMD is involved in AdoMetDC1 uORF peptide-mediated mRNA decay. Collectively, these findings suggest that AdoMetDC1 uORF peptide-mediated ribosomal arrest at the uORF stop codon induces NMD.

摘要

在信使核糖核酸(mRNA)翻译过程中,具有某些特定序列的新生肽会导致已合成自身的核糖体停滞。在某些情况下,这种核糖体停滞与mRNA降解相关联。在酵母中,mRNA质量控制系统已被证明参与了与核糖体停滞相关的mRNA降解。然而,在多细胞生物中尚未发现核糖体停滞与mRNA质量控制系统之间的联系。在本研究中,我们旨在探索植物中核糖体停滞与mRNA降解之间的关系。为此,我们使用了拟南芥AdoMetDC1基因的一个上游开放阅读框(uORF),其中uORF编码的肽参与了对主要编码序列的多胺响应性翻译抑制。我们的体外分析表明,AdoMetDC1 uORF编码的肽在多胺存在下会导致核糖体在uORF终止密码子处停滞。利用携带含有AdoMetDC1 uORF的报告基因的转基因愈伤组织,我们表明多胺以uORF序列依赖的方式促进mRNA降解。这些结果表明,由uORF编码的肽介导的多胺响应性核糖体停滞与mRNA降解相关联。我们的结果还表明,多胺响应性的mRNA降解加速因无义介导的mRNA降解(NMD)所需因子的缺陷而受损,NMD是一种mRNA质量控制系统,可降解带有提前终止密码子的mRNA,这表明NMD参与了AdoMetDC1 uORF肽介导的mRNA降解。总体而言,这些发现表明AdoMetDC1 uORF肽在uORF终止密码子处介导的核糖体停滞诱导了NMD。

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