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mRNA Degradation Plays a Significant Role in the Program of Gene Expression Regulated by Phosphatidylinositol 3-Kinase Signaling

机译:mRNA降解在磷脂酰肌醇3-激酶信号调控的基因表达程序中起重要作用

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摘要

Control of gene expression by the phosphatidylinositol (PI) 3-kinase/Akt pathway plays an important role in mammalian cell proliferation and survival, and numerous transcription factors and genes regulated by PI 3-kinase signaling have been identified. Because steady-state levels of mRNA are regulated by degradation as well as transcription, we have investigated the importance of mRNA degradation in controlling gene expression downstream of PI 3-kinase. We previously performed global expression analyses that identified a set of approximately 50 genes that were downregulated following inhibition of PI 3-kinase in proliferating T98G cells. By blocking transcription with actinomycin D, we found that almost 40% of these genes were regulated via effects of PI 3-kinase on mRNA stability. Analyses of β-globin-3′ untranslated region (UTR) fusion transcripts indicated that sequences within 3′ UTRs were the primary determinants of rapid mRNA decay. Small interfering RNA (siRNA) experiments further showed that knockdown of BRF1 or KSRP, both ARE binding proteins (ARE-BPs) regulated by Akt, stabilized the mRNAs of a majority of the downregulated genes but that knockdown of ARE-BPs that are not regulated by PI 3-kinase did not affect degradation of these mRNAs. These results show that PI 3-kinase regulation of mRNA stability, predominantly mediated by BRF1, plays a major role in regulating gene expression.
机译:通过磷脂酰肌醇(PI)3激酶/ Akt途径控制基因表达在哺乳动物细胞增殖和存活中起着重要作用,并且已经鉴定出许多转录因子和受PI 3激酶信号转导的基因。由于mRNA的稳态水平受降解和转录的调节,因此我们研究了mRNA降解在控制PI 3-激酶下游基因表达中的重要性。我们之前进行了全局表达分析,确定了大约50个在增殖T98G细胞中抑制PI 3-激酶后被下调的基因。通过用放线菌素D阻断转录,我们发现这些基因中几乎有40%是通过PI 3-激酶对mRNA稳定性的影响而被调节的。对β-globin-3'非翻译区(UTR)融合转录本的分析表明,3'UTR内的序列是mRNA快速衰减的主要决定因素。小型干扰RNA(siRNA)实验进一步表明,由Akt调控的两种ARE结合蛋白(ARE-BPs)的BRF1或KSRP的敲低可稳定大多数下调基因的mRNA,但对未被调控的ARE-BP的敲低PI 3-激酶的作用不影响这些mRNA的降解。这些结果表明,PI 3激酶对mRNA稳定性的调节主要由BRF1介导,在调节基因表达中起主要作用。

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