The fast and transient induction of immediate early genes orchestrates the cellular response to various stimuli. These stimuli trigger phosphorylation cascades that promote immediate early gene transcription independent of de novo protein synthesis. Here we show that the same phosphorylation cascades also target the splicing machinery, inducing an analogous splicing switch that we call immediate early splicing (IES). We characterize hnRNPC2-controlled IES, which depends on the MEK-ERK pathway and the T cell-specific kinase PKCθ. This splicing switch mainly targets components of the translation machinery, such as mRNAs encoding ribosomal proteins and eIF5A. Inducing the eIF5A IES protein variant is by itself sufficient to reduce global translation, and consistently, we observe reduced de novo protein synthesis early after T cell activation. We suggest that immediate early splicing and the ensuing transient decrease in translation efficiency help to coordinate the extensive changes in gene expression during T cell activation. Together, these findings set a paradigm for fast and transient alternative splicing in the immediate cellular response to activation, and provide evidence for its functional relevance during T-cell stimulation.
Immediate early splicing controls translation in activated T-cells and is mediated by hnRNPC2 phosphorylation.
立即早期剪接控制活化 T 细胞中的翻译,并且是由 hnRNPC2 磷酸化介导的
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作者:Dróżdż Mateusz, Zuvanov LuÃza, Sasikumar Gopika, Bose Debojit, Bruening Franziska, Robles Maria S, PreuÃner Marco, Wahl Markus, Heyd Florian
| 期刊: | EMBO Journal | 影响因子: | 8.300 |
| 时间: | 2025 | 起止号: | 2025 Mar;44(6):1692-1723 |
| doi: | 10.1038/s44318-025-00374-8 | 研究方向: | 细胞生物学 |
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