Izmir International Biomedicine and Genome Institute (iBG-izmir), Dokuz Eylül University, 35340, Izmir, Turkey.
Department of Neuroscience, Health Science Institute, Dokuz Eylül University, 35340, Izmir, Turkey.
Sci Rep. 2017 Mar 30;7:45661. doi: 10.1038/srep45661.
Neurotransmitters and peptide hormones are secreted into outside the cell by a vesicle fusion process. Although non-coding RNA (ncRNA) that include microRNA (miRNA) regulates gene expression inside the cell where they are transcribed, extracellular miRNA has been recently discovered outside the cells, proposing that miRNA might be released to participate in cell-to-cell communication. Despite its importance of extracellular miRNA, the molecular mechanisms by which miRNA can be stored in vesicles and released by vesicle fusion remain enigmatic. Using next-generation sequencing, vesicle purification techniques, and synthetic neurotransmission, we observe that large dense-core vesicles (LDCVs) contain a variety of miRNAs including miR-375. Furthermore, miRNA exocytosis is mediated by the SNARE complex and accelerated by Ca. Our results suggest that miRNA can be a novel neuromodulator that can be stored in vesicles and released by vesicle fusion together with classical neurotransmitters.
神经递质和肽类激素通过囊泡融合过程被分泌到细胞外。虽然包括 microRNA(miRNA)在内的非编码 RNA(ncRNA)可以在转录它们的细胞内调节基因表达,但最近在细胞外发现了细胞外 miRNA,这表明 miRNA 可能被释放出来参与细胞间通讯。尽管细胞外 miRNA 很重要,但 miRNA 如何在囊泡中储存并通过囊泡融合释放的分子机制仍然是个谜。使用下一代测序、囊泡纯化技术和合成神经传递,我们观察到大致密核心囊泡 (LDCV) 中包含多种 miRNA,包括 miR-375。此外,miRNA 的胞吐作用是由 SNARE 复合物介导的,并被 Ca 加速。我们的结果表明,miRNA 可以作为一种新型神经调质,与经典神经递质一起储存在囊泡中并通过囊泡融合释放。