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Nerve growth factor controls GAP-43 mRNA stability via the phosphoprotein ARPP-19

机译:神经生长因子通过磷酸蛋白ARPP-19控制GAP-43 mRNA的稳定性

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摘要

The membrane phosphoprotein GAP-43 is involved in axon growth and synaptic plasticity. In PC12 pheochromocytoma cells, induction of a neuronal phenotype by nerve growth factor (NGF) is accompanied by a marked increase in GAP-43 levels. NGF regulates GAP-43 expression by altering the half-life of its mRNA. We report here that the phosphoprotein ARPP-19 mediates this regulation. In an NGF-dependent manner, ARPP-19 bound to a region in the 3' end of GAP-43 mRNA previously found to be important for regulating the half-life of the mRNA. Overexpression of wild-type ARPP-19 in PC12 cells increased the NGF-dependent expression of a reporter construct linked to the critical 3' region of GAP-43 mRNA. Mutation of serine 104, the site of phosphorylation by protein kinase A in ARPP-19, to either alanine or aspartate abolished this regulation in PC12 cells. These findings demonstrate that ARPP-19 is an important link between NGF signaling and post-transcrip-tional control of neuronal gene expression.
机译:膜磷蛋白GAP-43参与轴突生长和突触可塑性。在PC12嗜铬细胞瘤细胞中,神经生长因子(NGF)诱导神经元表型伴随着GAP-43水平的显着增加。 NGF通过改变其mRNA的半衰期来调节GAP-43的表达。我们在这里报告说,磷酸蛋白ARPP-19介导了这一调控。以NGF依赖性方式,ARPP-19结合到先前发现的GAP-43 mRNA的3'末端区域对于调节mRNA的半衰期很重要。在PC12细胞中野生型ARPP-19的过表达增加了与GAP-43 mRNA的关键3'区相连的报告基因构建物的NGF依赖性表达。丝氨酸104突变,即ARPP-19中蛋白激酶A磷酸化的位点,变为丙氨酸或天冬氨酸,从而消除了PC12细胞中的这种调节。这些发现表明ARPP-19是NGF信号和转录后神经元基因表达控制之间的重要联系。

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