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Inhibition of cytoplasmic cap methylation identifies 5′ TOP mRNAs as recapping targets and reveals recapping sites downstream of native 5′ ends

机译:抑制胞质帽甲基化可鉴定5TOP mRNA为重新定位的靶标并揭示天然5末端下游的重新定位位点

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摘要

Cap homeostasis is the cyclical process of decapping and recapping that maintains the translation and stability of a subset of the transcriptome. Previous work showed levels of some recapping targets decline following transient expression of an inactive form of RNMT (ΔN-RNMT), likely due to degradation of mRNAs with improperly methylated caps. The current study examined transcriptome-wide changes following inhibition of cytoplasmic cap methylation. This identified mRNAs with 5′-terminal oligopyrimidine (TOP) sequences as the largest single class of recapping targets. Cap end mapping of several TOP mRNAs identified recapping events at native 5′ ends and downstream of the TOP sequence of EIF3K and EIF3D. This provides the first direct evidence for downstream recapping. Inhibition of cytoplasmic cap methylation was also associated with mRNA abundance increases for a number of transcription, splicing, and 3′ processing factors. Previous work suggested a role for alternative polyadenylation in target selection, but this proved not to be the case. However, inhibition of cytoplasmic cap methylation resulted in a shift of upstream polyadenylation sites to annotated 3′ ends. Together, these results solidify cap homeostasis as a fundamental process of gene expression control and show cytoplasmic recapping can impact regulatory elements present at the ends of mRNA molecules.
机译:瓶盖稳态是去盖和重新盖盖的周期性过程,可维持转录组子集的翻译和稳定性。先前的研究表明,在暂时表达无活性形式的RNMT(ΔN-RNMT)后,某些重排目标的水平下降,这可能是由于甲基化帽的甲基化导致的降解。本研究检查了抑制胞质帽甲基化后转录组范围内的变化。这将具有5'-末端寡嘧啶(TOP)序列的mRNA鉴定为最大的单一捕获目标类别。几个TOP mRNA的帽末端作图确定了在EIF3K和EIF3D的TOP序列的天然5'末端和下游的重新捕获事件。这为下游重新封盖提供了第一个直接证据。对于许多转录,剪接和3'加工因子,细胞质帽甲基化的抑制也与mRNA丰度的增加有关。先前的工作提出了替代性聚腺苷酸化在靶标选择中的作用,但事实并非如此。然而,细胞质帽甲基化的抑制导致上游聚腺苷酸化位点转移到带注释的3'末端。总之,这些结果巩固了瓶盖稳态作为基因表达控制的基本过程,并表明细胞质的重新封盖可以影响存在于mRNA分子末端的调控元件。

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