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鉴定 mRNA 5'端加帽的质量控制机制。

Identification of a quality-control mechanism for mRNA 5'-end capping.

机构信息

Department of Cell Biology and Neuroscience, Rutgers University, Piscataway, New Jersey 08854, USA.

出版信息

Nature. 2010 Sep 30;467(7315):608-11. doi: 10.1038/nature09338. Epub 2010 Aug 29.

Abstract

The 7-methylguanosine cap structure at the 5' end of eukaryotic messenger RNAs is a critical determinant of their stability and translational efficiency. It is generally believed that 5'-end capping is a constitutive process that occurs during mRNA maturation and lacks the need for a quality-control mechanism to ensure its fidelity. We recently reported that the yeast Rai1 protein has pyrophosphohydrolase activity towards mRNAs lacking a 5'-end cap. Here we show that, in vitro as well as in yeast cells, Rai1 possesses a novel decapping endonuclease activity that can also remove the entire cap structure dinucleotide from an mRNA. This activity is targeted preferentially towards mRNAs with unmethylated caps in contrast to the canonical decapping enzyme, Dcp2, which targets mRNAs with a methylated cap. Capped but unmethylated mRNAs generated in yeast cells with a defect in the methyltransferase gene are more stable in a rai1-gene-disrupted background. Moreover, rai1Δ yeast cells with wild-type capping enzymes show significant accumulation of mRNAs with 5'-end capping defects under nutritional stress conditions of glucose starvation or amino acid starvation. These findings provide evidence that 5'-end capping is not a constitutive process that necessarily always proceeds to completion and demonstrates that Rai1 has an essential role in clearing mRNAs with aberrant 5'-end caps. We propose that Rai1 is involved in an as yet uncharacterized quality control process that ensures mRNA 5'-end integrity by an aberrant-cap-mediated mRNA decay mechanism.

摘要

真核信使 RNA 5' 端的 7-甲基鸟苷帽结构是其稳定性和翻译效率的关键决定因素。人们普遍认为 5' 端加帽是一种组成性过程,发生在 mRNA 成熟过程中,不需要质量控制机制来确保其保真度。我们最近报道酵母 Rai1 蛋白对缺乏 5' 端帽的 mRNA 具有焦磷酸水解酶活性。在这里,我们表明,在体外和酵母细胞中,Rai1 具有一种新型的脱帽内切核酸酶活性,可从 mRNA 中去除整个帽结构二核苷酸。与靶向甲基化帽的典型脱帽酶 Dcp2 相反,该活性优先靶向未甲基化帽的 mRNA。在甲基转移酶基因缺陷的酵母细胞中产生的带帽但未甲基化的 mRNA 在 rai1 基因缺失背景下更稳定。此外,在葡萄糖饥饿或氨基酸饥饿等营养胁迫条件下,具有野生型加帽酶的 rai1Δ 酵母细胞中,带有 5' 端加帽缺陷的 mRNA 会大量积累。这些发现为 5' 端加帽不是一种组成性过程,不一定总是完全进行,并证明 Rai1 在清除具有异常 5' 端帽的 mRNA 方面具有重要作用。我们提出 Rai1 参与了一个尚未被描述的质量控制过程,通过异常帽介导的 mRNA 降解机制来确保 mRNA 5' 端的完整性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd2e/2948066/7101bc5e48cd/nihms220060f1.jpg

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