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首页> 外文期刊>Nucleic acids research >Transcriptome-wide stability analysis uncovers LARP4-mediated NFκB1 mRNA stabilization during T?cell activation
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Transcriptome-wide stability analysis uncovers LARP4-mediated NFκB1 mRNA stabilization during T?cell activation

机译:转录组宽稳定性分析在T≥细胞活化期间发现碱化的NFκB1mRNA稳定化

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T cell activation is a well-established model for studying cellular responses to exogenous stimulation. Motivated by our previous finding that intron retention (IR) could lead to transcript instability, in this study, we performed BruChase-Seq to experimentally monitor the expression dynamics of nascent transcripts in resting and activated CD4+ T cells. Computational modeling was then applied to quantify the stability of spliced and intron-retained transcripts on a genome-wide scale. Beyond substantiating that intron-retained transcripts were considerably less stable than spliced transcripts, we found a global stabilization of spliced mRNAs upon T cell activation, although the stability of intron-retained transcripts remained relatively constant. In addition, we identified that La-related protein 4 (LARP4), an RNA-binding protein (RBP) known to enhance mRNA stability, was involved in T cell activation-dependent mRNA stabilization. Knocking out Larp4 in mice destabilized Nfκb1 mRNAs and reduced secretion of interleukin-2 (IL2) and interferon-gamma (IFNγ), two factors critical for T cell proliferation and function. We propose that coordination between splicing regulation and mRNA stability may provide a novel paradigm to control spatiotemporal gene expression during T cell activation.
机译:T细胞活化是研究对外源刺激的细胞反应的良好建立的模型。通过我们之前发现的,内含子保留(IR)可能导致本研究中的成绩单不稳定,我们进行了BRUCHASE-SEQ以通过实验监测休息和活化的CD4 + T细胞中新生转录物的表达动态。然后应用计算建模以量化基因组范围内拼接和内含子病程的稳定性。除了实质上,由于内含子病程比剪接转录物相当较低,我们发现在T细胞活化时脾气暴露的全局稳定性,尽管内含子保留的转录物的稳定性保持相对恒定。此外,我们鉴定了La相关蛋白4(LARP4),已知的RNA结合蛋白(RBP)提高mRNA稳定性,参与T细胞活化依赖性mRNA稳定化。敲除小鼠的碱性失稳的NFκB1mRNA和白细胞介素-2(IL2)和干扰素 - γ(IFNγ)的分泌,对T细胞增殖和功能至关重要的两个因素。我们提出剪接调节和mRNA稳定性之间的协调可以提供一种新的范例来控制T细胞活化期间控制时空基因表达。

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