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Oligodendroglial Argonaute protein Ago2 associates with molecules of the Mbp mRNA localization machinery and is a downstream target of Fyn kinase

机译:少突胶质精氨酸蛋白Ago2与 Mbp mRNA定位机制的分子缔合,并且是Fyn激酶的下游靶标

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Oligodendrocytes myelinate neuronal axons in the central nervous system (CNS) facilitating rapid transmission of action potentials by saltatory conduction. Myelin basic protein (MBP) is an essential component of myelin and its absence results in severe hypomyelination in the CNS of rodents. Mbp mRNA is not translated immediately after exit from the nucleus in the cytoplasm, but is transported to the plasma membrane in RNA transport granules in a translationally silenced state. We have previously identified the small non-coding RNA 715 (sncRNA715) as an inhibitor of Mbp translation associated with RNA granules. Argonaute (Ago) proteins and small RNAs form the minimal core of the RNA induced silencing complex and together recognize target mRNAs to be translationally inhibited or degraded. Recently, tyrosine phosphorylation of Ago2 was reported to be a regulator of small RNA binding. The oligodendroglial non-receptor tyrosine kinase Fyn is activated by neuronal signals and stimulates the translation of Mbp mRNA at the axon-glial contact site. Here we analyzed the expression of Ago proteins in oligodendrocytes, if they associate with Mbp mRNA transport granules and are tyrosine phosphorylated by Fyn. We show that all Ago proteins (Ago1-4) are expressed by oligodendrocytes and that Ago2 colocalizes with hnRNP A2 in granular cytoplasmic structures. Ago2 associates with hnRNP A2, Mbp mRNA, sncRNA715 and Fyn kinase and is tyrosine phosphorylated in response to Fyn activity. Our findings suggest an involvement of Ago2 in the translational regulation of Mbp . The identification of Ago proteins as Fyn targets will foster further research to understand in more molecular detail how Fyn activity regulates Mbp translation.
机译:少突胶质细胞使中枢神经系统(CNS)的神经元轴突发生分化,从而促进了盐分传导快速传递动作电位。髓磷脂碱性蛋白(MBP)是髓磷脂的重要组成部分,其缺失会导致啮齿动物中枢神经系统严重的髓鞘过少。 Mbp mRNA从细胞质中的核退出后不会立即翻译,而是以RNA转运颗粒的翻译沉默状态转运到质膜。我们之前已经确定了小的非编码RNA 715(sncRNA715)是与RNA颗粒相关的Mbp翻译的抑制剂。 Argonaute(Ago)蛋白和小RNA形成RNA诱导的沉默复合物的最小核心,并共同识别待翻译抑制或降解的目标mRNA。最近,据报道Ago2的酪氨酸磷酸化是小RNA结合的调节剂。少突胶质非受体酪氨酸激酶Fyn被神经元信号激活,并刺激轴突-胶质接触部位Mbp mRNA的翻译。在这里,我们分析了Ago蛋白在少突胶质细胞中的表达,如果它们与Mbp mRNA转运颗粒相关并且被Fyn磷酸化了酪氨酸。我们显示,所有Ago蛋白(Ago1-4)由少突胶质细胞表达,并且Ago2与hnRNP A2共定位在颗粒状细胞质结构中。 Ago2与hnRNP A2,Mbp mRNA,sncRNA715和Fyn激酶缔合,并响应Fyn活性而使酪氨酸磷酸化。我们的发现表明Ago2参与Mbp的翻译调控。鉴定作为Fyn靶标的Ago蛋白将促进进一步的研究,以更详细地了解Fyn活性如何调节Mbp翻译。

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