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mRNA 衰变速率塑造了哺乳动物 mRNA 的 Cap2 甲基组。

mRNA ageing shapes the Cap2 methylome in mammalian mRNA.

机构信息

Department of Pharmacology, Weill Cornell Medicine, Cornell University, New York, NY, USA.

出版信息

Nature. 2023 Feb;614(7947):358-366. doi: 10.1038/s41586-022-05668-z. Epub 2023 Feb 1.

Abstract

The mRNA cap structure is a major site of dynamic mRNA methylation. mRNA caps exist in either the Cap1 or Cap2 form, depending on the presence of 2'-O-methylation on the first transcribed nucleotide or both the first and second transcribed nucleotides, respectively. However, the identity of Cap2-containing mRNAs and the function of Cap2 are unclear. Here we describe CLAM-Cap-seq, a method for transcriptome-wide mapping and quantification of Cap2. We find that unlike other epitranscriptomic modifications, Cap2 can occur on all mRNAs. Cap2 is formed through a slow continuous conversion of mRNAs from Cap1 to Cap2 as mRNAs age in the cytosol. As a result, Cap2 is enriched on long-lived mRNAs. Large increases in the abundance of Cap1 leads to activation of RIG-I, especially in conditions in which expression of RIG-I is increased. The methylation of Cap1 to Cap2 markedly reduces the ability of RNAs to bind to and activate RIG-I. The slow methylation rate of Cap2 allows Cap2 to accumulate on host mRNAs, yet ensures that low levels of Cap2 occur on newly expressed viral RNAs. Overall, these results reveal an immunostimulatory role for Cap1, and that Cap2 functions to reduce activation of the innate immune response.

摘要

mRNA 帽结构是动态 mRNA 甲基化的主要位点。mRNA 帽存在于 Cap1 或 Cap2 形式,具体取决于第一个转录核苷酸是否存在 2'-O-甲基化,或者第一个和第二个转录核苷酸是否都存在。然而,Cap2 包含的 mRNAs 的身份和 Cap2 的功能尚不清楚。在这里,我们描述了 CLAM-Cap-seq,这是一种用于 Cap2 的转录组范围作图和定量的方法。我们发现,与其他转录后修饰不同,Cap2 可以发生在所有的 mRNAs 上。Cap2 是通过 mRNA 在细胞质中衰老时从 Cap1 到 Cap2 的缓慢连续转化形成的。因此,Cap2 在长寿的 mRNAs 上富集。Cap1 的丰度大量增加会导致 RIG-I 的激活,尤其是在 RIG-I 表达增加的情况下。Cap1 的甲基化到 Cap2 的显著降低了 RNA 与 RIG-I 结合并激活 RIG-I 的能力。Cap2 的缓慢甲基化速率允许 Cap2 在宿主 mRNAs 上积累,但确保在新表达的病毒 RNA 上出现低水平的 Cap2。总的来说,这些结果揭示了 Cap1 的免疫刺激作用,以及 Cap2 降低先天免疫反应激活的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94e1/9891201/2fd03f7b9bde/41586_2022_5668_Fig1_HTML.jpg

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