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p38α Mitogen-Activated Protein Kinase Depletion and Repression of Signal Transduction to Translation Machinery by miR-124 and -128 in Neurons

机译:p38α丝裂原激活的蛋白激酶耗竭并抑制miR-124和-128在神经元中向翻译机的信号转导

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摘要

The p38α to p38δ mitogen-activated protein kinases (MAPKs) are central regulatory nodes coordinating acute stress and inflammatory responses. Their activation leads to rapid adjustment of protein synthesis, for instance translational induction of proinflammatory cytokines. The only known direct link of p38 to translation machinery is the MAPK signal-integrating kinase Mnk. Only p38α and p38β transcripts are ubiquitously expressed. These mRNAs encode highly conserved proteins that equally phosphorylate recombinant Mnk1 in vitro. We discovered that expression of the p38α protein, but not the p38β isoform, is suppressed in the brain. This is due to p38α depletion by two neuron-selective microRNAs (miRNAs), miR-124 and -128. Suppression of p38α protein was reversed by miR-124/-128 antisense oligonucleotides in primary explant neuronal cultures. Targeted p38α depletion reduced Mnk1 activation, which cannot be compensated by p38β. Our research shows that p38α alone controls acute stress and cytokine signaling from p38 MAPK to translation machinery. This regulatory axis is greatly diminished in neurons, which may insulate brain physiology and function from p38α-Mnk1-mediated signaling.
机译:p38α至p38δ丝裂原激活的蛋白激酶(MAPK)是协调急性应激和炎症反应的中心调节节点。它们的活化导致蛋白质合成的快速调节,例如促炎性细胞因子的翻译诱导。 p38与翻译机制的唯一已知直接联系是MAPK信号整合激酶Mnk。仅p38α和p38β转录本被普遍表达。这些mRNA编码高度保守的蛋白质,这些蛋白质在体外均能磷酸化重组Mnk1。我们发现在大脑中p38α蛋白的表达被抑制,而p38β亚型的表达没有被抑制。这是由于两个神经元选择性microRNA(miRNA)miR-124和-128耗尽了p38α。在原代外植体神经元培养物中,miR-124 / -128反义寡核苷酸可逆转p38α蛋白的抑制作用。有针对性的p38α耗竭减少了Mnk1激活,而p38β不能补偿。我们的研究表明,单独的p38α可以控制从p38 MAPK到翻译机制的急性应激和细胞因子信号转导。该调节轴在神经元中大大减少,这可能使p38α-Mnk1介导的信号传导与大脑生理和功能隔离。

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