School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, SBS-02n-45, Singapore, 637551, Singapore.
Nucleic Acids Res. 2012 Jan;40(2):787-800. doi: 10.1093/nar/gkr783. Epub 2011 Sep 24.
RNA-binding protein HuR modulates the stability and translational efficiency of messenger RNAs (mRNAs) encoding essential components of the cellular proliferation, growth and survival pathways. Consistent with these functions, HuR levels are often elevated in cancer cells and reduced in senescent and quiescent cells. However, the molecular mechanisms that control HuR expression are poorly understood. Here we show that HuR protein autoregulates its abundance through a negative feedback loop that involves interaction of the nuclear HuR protein with a GU-rich element (GRE) overlapping with the HuR major polyadenylation signal (PAS2). An increase in the cellular HuR protein levels stimulates the expression of long HuR mRNA species containing an AU-rich element (ARE) that destabilizes the mRNAs and thus reduces the protein production output. The PAS2 read-through occurs due to a reduced recruitment of the CstF-64 subunit of the pre-mRNA cleavage stimulation factor in the presence of the GRE-bound HuR. We propose that this mechanism maintains HuR homeostasis in proliferating cells. Since only the nuclear HuR is expected to contribute to the auto-regulation, our model may explain the longstanding observation that the increase in the total HuR expression in cancer cells often correlates with the accumulation of its substantial fraction in the cytoplasm.
RNA 结合蛋白 HuR 调节编码细胞增殖、生长和存活途径基本成分的信使 RNA(mRNA)的稳定性和翻译效率。与这些功能一致,HuR 水平在癌细胞中通常升高,在衰老和静止细胞中降低。然而,控制 HuR 表达的分子机制还知之甚少。在这里,我们表明 HuR 蛋白通过负反馈回路自我调节其丰度,该回路涉及核 HuR 蛋白与重叠 HuR 主要多聚腺苷酸化信号(PAS2)的富含 GU 的元件(GRE)的相互作用。细胞 HuR 蛋白水平的增加刺激含有富含 AU 元件(ARE)的长 HuR mRNA 物种的表达,该元件使 mRNA 不稳定,从而降低蛋白质产生的产量。PAS2 通读的发生是由于在存在与 GRE 结合的 HuR 的情况下,前体 mRNA 切割刺激因子的 CstF-64 亚基的募集减少。我们提出,这种机制在增殖细胞中维持 HuR 平衡。由于只有核 HuR 有望有助于自动调节,因此我们的模型可能解释了长期存在的观察结果,即癌细胞中总 HuR 表达的增加通常与细胞质中其大量部分的积累相关。