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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Synaptosomes secrete and uptake functionally active microRNAs via exocytosis and endocytosis pathways
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Synaptosomes secrete and uptake functionally active microRNAs via exocytosis and endocytosis pathways

机译:突触小体通过胞吐和胞吞途径分泌和摄取功能活跃的microRNA

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In this study, we first characterized synaptosome microRNA (miRNA) profiles using microarray and qRT-PCR. MicroRNAs were detected in isolated synaptic vesicles, and Ago2 immunoprecipitation studies revealed an association between miRNAs and Ago2. Second, we found that miR-29a, miR-99a, and miR-125a were significantly elevated in synaptosome supernatants after depolarization. MiRNA secretion by the synaptosome was Ca2+-dependent and was inhibited by the exocytosis inhibitor, okadaic acid. Furthermore, application of nerve growth factor increased miRNA secretion without altering the spontaneous release of miRNAs. Conversely, kainic acid decreased miRNA secretion and enhanced the spontaneous release of miRNAs. These results indicate that synaptosomes could secrete miRNAs. Finally, synthesized miRNAs were taken up by synaptosomes, and the endocytosis inhibitor Dynasore blocked this process. After incubation with miR-125a, additional miR-125a was bound to Ago2 in the synaptosome, and expression of the miR-125a target gene (PSD95 mRNA) was decreased; these findings suggest that the ingested miRNAs were assembled in the RNA-induced silencing complex, resulting in the degradation of target mRNAs. To our knowledge, this is the first study that demonstrates the secretion of miRNAs by synaptosomes under physiological stimulation and demonstrates that secreted miRNAs might be functionally active after being taken up by the synaptic fraction via the endocytic pathway. Synaptic miRNAs are existed in synapse and regulate the local translation within the synapse. In present study, Jie-Xu et al. found that miRNAs were existed in synaptic vesicles and could be secreted or uptaken via exocytosis and endocytic pathways. This new finding for first time demonstrated the secretion of miRNAs by synaptosomes under physiological stimulation and the secreted miRNAs might be functionally active.
机译:在这项研究中,我们首先使用微阵列和qRT-PCR表征了突触体微RNA(miRNA)谱。在分离的突触小泡中检测到MicroRNA,Ago2免疫沉淀研究显示miRNA与Ago2之间存在关联。其次,我们发现去极化后,突触体上清液中的miR-29a,miR-99a和miR-125a显着升高。突触小体分泌的miRNA是Ca2 +依赖性的,并被胞吐抑制剂冈田酸抑制。此外,神经生长因子的应用增加了miRNA的分泌,而不会改变miRNA的自发释放。相反,海藻酸减少了miRNA的分泌并增强了miRNA的自发释放。这些结果表明突触小体可以分泌miRNA。最后,合成的miRNA被突触小体吸收,内吞抑制剂Dynasore阻止了这一过程。与miR-125a孵育后,另外的miR-125a与突触小体中的Ago2结合,miR-125a靶基因(PSD95 mRNA)的表达降低;这些发现表明,摄入的miRNA组装在RNA诱导的沉默复合物中,导致目标mRNA的降解。据我们所知,这是第一项证明生理刺激下突触小体分泌miRNA的研究,并证明分泌的miRNA在通过内吞途径被突触级分吸收后可能具有功能活性。突触miRNA存在于突触中,并调节突触内的局部翻译。在本研究中,Jie-Xu等人。发现miRNA存在于突触小泡中,可以通过胞吐作用和胞吞途径分泌或摄取。这项新发现首次证明了在生理刺激下突触小体分泌miRNA,而分泌的miRNA可能具有功能活性。

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