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Coordinated posttranscriptional mRNA population dynamics during T-cell activation

机译:T细胞活化过程中转录后转录的mRNA种群动态。

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摘要

Although RNA-binding proteins (RBPs) coordinate many key decisions during cell growth and differentiation, the dynamics of RNA–RBP interactions have not been extensively studied on a global basis. We immunoprecipitated endogenous ribonucleoprotein complexes containing HuR and PABP throughout a T-cell activation time course and identified the associated mRNA populations using microarrays. We used Gaussian mixture modeling as a discriminative model, treating RBP association as a discrete variable (target or not target), and as a generative model, treating RBP-association as a continuous variable (probability of association). We report that HuR interacts with different populations of mRNAs during T-cell activation. These populations encode functionally related proteins that are members of the Wnt pathway and proteins mediating T-cell receptor signaling pathways. Moreover, the mRNA targets of HuR were found to overlap with the targets of other posttranscriptional regulatory factors, indicating combinatorial interdependence of posttranscriptional regulatory networks and modules after activation. Applying HuR mRNA dynamics as a quantitative phenotype in the drug-gene-phenotype Connectivity Map, we identified candidate small molecule effectors of HuR and T-cell activation. We show that one of these candidates, resveratrol, exerts T-cell activation-dependent posttranscriptional effects that are rescued by HuR. Thus, we describe a strategy to systematically link an RBP and condition-specific posttranscriptional effects to small molecule drugs.
机译:尽管RNA结合蛋白(RBP)协调了细胞生长和分化过程中的许多关键决定,但尚未在全球范围内广泛研究RNA-RBP相互作用的动力学。我们在整个T细胞活化时间过程中免疫沉淀了含有HuR和PABP的内源性核糖核蛋白复合物,并使用微阵列鉴定了相关的mRNA群体。我们将高斯混合模型用作判别模型,将RBP关联视为离散变量(目标或非目标),并将其用作生成模型,将RBP关联视为连续变量(关联的概率)。我们报告说,HuR在T细胞激活过程中与不同的mRNA相互作用。这些种群编码是Wnt途径成员的功能相关蛋白和介导T细胞受体信号传导途径的蛋白。而且,发现HuR的mRNA靶标与其他转录后调控因子的靶标重叠,表明活化后转录后调控网络和模块的组合相互依赖性。应用HuR mRNA动态作为药物基因表型连接图中的定量表型,我们确定了HuR和T细胞活化的候选小分子效应子。我们显示,这些候选人之一,白藜芦醇,发挥了被HuR营救的T细胞活化依赖性转录后效应。因此,我们描述了将RBP和条件特异性转录后作用与小分子药物系统地联系起来的策略。

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