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Identification of a set of KSRP target transcripts upregulated by PI3K-AKT signaling

机译:鉴定一组由PI3K-AKT信号上调的KSRP靶转录本

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摘要

Background KSRP is a AU-rich element (ARE) binding protein that causes decay of select sets of transcripts in different cell types. We have recently described that phosphatidylinositol 3-kinase/AKT (PI3K-AKT) activation induces stabilization and accumulation of the labile β-catenin mRNA through an impairment of KSRP function. Results Aim of this study was to identify additional KSRP targets whose stability and steady-state levels are enhanced by PI3K-AKT activation. First, through microarray analyses of the AU-rich transcriptome in pituitary αT3-1 cells, we identified 34 ARE-containing transcripts upregulated in cells expressing a constitutively active form of AKT1. In parallel, by an affinity chromatography-based technique followed by microarray analyses, 12 mRNAs target of KSRP, additional to β-catenin, were identified. Among them, seven mRNAs were upregulated in cells expressing activated AKT1. Both steady-state levels and stability of these new KSRP targets were consistently increased by either KSRP knock-down or PI3K-AKT activation. Conclusion Our study identified a set of transcripts that are targets of KSRP and whose expression is increased by PI3K-AKT activation. These mRNAs encode RNA binding proteins, signaling molecules and a replication-independent histone. The increased expression of these gene products upon PI3K-AKT activation could play a role in the cellular events initiated by this signaling pathway.
机译:背景技术KSRP是一种富含AU的元件(ARE)结合蛋白,可导致不同细胞类型的部分转录本降解。我们最近描述了磷脂酰肌醇3-激酶/ AKT(PI3K-AKT)激活通过破坏KSRP功能诱导不稳定的β-cateninmRNA的稳定和积累。结果本研究的目的是确定通过PI3K-AKT激活增强其稳定性和稳态水平的其他KSRP靶标。首先,通过对垂体αT3-1细胞中富含AU的转录组进行微阵列分析,我们鉴定了34种含有ARE的转录本,这些转录本在表达AKT1组成型活性形式的细胞中上调。平行地,通过基于亲和色谱的技术,接着进行微阵列分析,鉴定了除β-连环蛋白外的KSRP的12个mRNA靶标。其中,在表达活化的AKT1的细胞中七个mRNA被上调。这些新的KSRP靶标的稳态水平和稳定性都通过KSRP敲低或PI3K-AKT激活而持续提高。结论我们的研究确定了一组转录物,这些转录物是KSRP的靶标,并且其表达通过PI3K-AKT激活而增加。这些mRNA编码RNA结合蛋白,信号分子和非复制依赖性组蛋白。这些基因产物在PI3K-AKT激活后表达的增加可能在此信号通路引发的细胞事件中起作用。

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