Kirchhof Luisa, Fouani Youssef, Knau Andrea, Aslan Galip S, Heumüller Andreas W, Wittig Ilka, Müller-McNicoll Michaela, Dimmeler Stefanie, Jaé Nicolas
Institute of Cardiovascular Regeneration, University Hospital, Goethe University Frankfurt, 60590 Frankfurt, Germany.
Faculty of Biological Sciences, Goethe University Frankfurt, 60438 Frankfurt, Germany.
Noncoding RNA. 2022 Jun 30;8(4):49. doi: 10.3390/ncrna8040049.
Besides transcription, RNA decay accounts for a large proportion of regulated gene expression and is paramount for cellular functions. Classical RNA surveillance pathways, like nonsense-mediated decay (NMD), are also implicated in the turnover of non-mutant transcripts. Whereas numerous protein factors have been assigned to distinct RNA decay pathways, the contribution of long non-coding RNAs (lncRNAs) to RNA turnover remains unknown. Here we identify the lncRNA as a potent regulator of RNA turnover in endothelial cells. We demonstrate that forms cytoplasmic ribonucleoprotein complexes with G3BP1 and regulates endothelial cell functions. A detailed characterization of these G3BP1-positive complexes by mass spectrometry identifies UPF1 and numerous other NMD factors having cytoplasmic G3BP1-association that is -dependent. Importantly, silencing impairs degradation of NMD target transcripts, establishing as a non-coding regulator of RNA steady-state levels in the endothelium.
除了转录之外,RNA降解在基因表达调控中占很大比例,并且对细胞功能至关重要。经典的RNA监测途径,如无义介导的衰变(NMD),也与非突变转录本的周转有关。尽管众多蛋白质因子已被分配到不同的RNA降解途径,但长链非编码RNA(lncRNA)对RNA周转的贡献仍不清楚。在这里,我们确定lncRNA是内皮细胞中RNA周转的有效调节因子。我们证明,lncRNA与G3BP1形成细胞质核糖核蛋白复合物并调节内皮细胞功能。通过质谱对这些G3BP1阳性复合物进行详细表征,鉴定出UPF1和许多其他与细胞质G3BP1相关的NMD因子,这种相关性是依赖于lncRNA的。重要的是,lncRNA沉默会损害NMD靶转录本的降解,确立了lncRNA作为内皮细胞中RNA稳态水平的非编码调节因子的地位。