Institute of Experimental Pathology (ZMBE), University of Muenster, Von-Esmarch-Str. 56, D-48149, Muenster, Germany.
Institute of Medical Biochemistry (ZMBE), University of Muenster, Von-Esmarch-Str. 56, D-48149, Muenster, Germany.
Sci Rep. 2019 Mar 12;9(1):4300. doi: 10.1038/s41598-019-39940-6.
Serotonin 5-HT2C receptor is a G-protein coupled excitatory receptor that regulates several biochemical pathways and has been implicated in obesity, mental state, sleep cycles, autism, neuropsychiatric disorders and neurodegenerative diseases. The activity of 5-HT2CR is regulated via alternative splicing and A to I editing of exon Vb of its pre-mRNA. Snord115 is a small nucleolar RNA that is expressed in mouse neurons and displays an 18-nucleotide base complementary to exon Vb of 5-HT2CR pre-mRNA. For almost two decades this putative guide element of Snord115 has wandered like a ghost through the literature in attempts to elucidate the biological significance of this complementarity. In mice, Snord115 is expressed in neurons and absent in the choroid plexus where, in contrast, 5-Ht2cr mRNA is highly abundant. Here we report the analysis of 5-Ht2cr pre-mRNA posttranscriptional processing via RNA deep sequencing in a mouse model that ectopically expresses Snord115 in the choroid plexus. In contrast to previous reports, our analysis demonstrated that Snord115 does not control alternative splicing of 5-Ht2cr pre-mRNA in vivo. We identified a modest, yet statistically significant reduction of 5-Ht2cr pre-mRNA A to I editing at the major A, B, C and D sites. We suggest that Snord115 and exon Vb of 5Ht2cr pre-mRNA form a double-stranded structure that is subject to ADAR-mediated A to I editing. To the best of our knowledge, this is the first comprehensive Snord115 gain-of-function analysis based on in vivo mouse models.
5-羟色胺 5-HT2C 受体是一种 G 蛋白偶联的兴奋性受体,它调节着几种生化途径,与肥胖、精神状态、睡眠周期、自闭症、神经精神疾病和神经退行性疾病有关。5-HT2CR 的活性通过其前体 mRNA 外显子 Vb 的选择性剪接和 A 到 I 的编辑来调节。Snord115 是一种小核仁 RNA,在小鼠神经元中表达,并显示出与 5-HT2CR 前体 mRNA 外显子 Vb 互补的 18 个碱基对。近二十年来,Snord115 的这个假定的引导元件一直像幽灵一样在文献中徘徊,试图阐明这种互补性的生物学意义。在小鼠中,Snord115 在神经元中表达,而在脉络丛中缺失,而 5-Ht2cr mRNA 在脉络丛中高度丰富。在这里,我们报告了在一个小鼠模型中通过 RNA 深度测序分析 5-HT2CR 前体 mRNA 转录后处理的结果,该模型在外周脉络丛中异位表达 Snord115。与之前的报道相反,我们的分析表明,Snord115 并没有在体内控制 5-HT2CR 前体 mRNA 的选择性剪接。我们发现,5-HT2CR 前体 mRNA 的 A 到 I 编辑在主要的 A、B、C 和 D 位点有适度但统计学上显著的减少。我们认为,Snord115 和 5-HT2CR 前体 mRNA 的外显子 Vb 形成了一种双链结构,该结构受 ADAR 介导的 A 到 I 编辑的影响。就我们所知,这是第一个基于体内小鼠模型的全面的 Snord115 功能获得分析。