Torres Manon, Becquet Denis, Blanchard Marie-Pierre, Guillen Séverine, Boyer Bénédicte, Moreno Mathias, Franc Jean-Louis, François-Bellan Anne-Marie
Faculté de Médecine Nord, Aix Marseille Université, CNRS, CRN2M-UMR7286, Marseille, France.
Elife. 2016 Jul 21;5:e14837. doi: 10.7554/eLife.14837.
Paraspeckles are nuclear bodies form around the long non-coding RNA, Neat1, and RNA-binding proteins. While their role is not fully understood, they are believed to control gene expression at a post-transcriptional level by means of the nuclear retention of mRNA containing in their 3'-UTR inverted repeats of Alu sequences (IRAlu). In this study, we found that, in pituitary cells, all components of paraspeckles including four major proteins and Neat1 displayed a circadian expression pattern. Furthermore the insertion of IRAlu at the 3'-UTR of the EGFP cDNA led to a rhythmic circadian nuclear retention of the egfp mRNA that was lost when paraspeckles were disrupted whereas insertion of a single antisense Alu had only a weak effect. Using real-time video-microscopy, these IRAlu were further shown to drive a circadian expression of EGFP protein. This study shows that paraspeckles, thanks to their circadian expression, control circadian gene expression at a post-transcriptional level.
旁斑是围绕长链非编码RNA(Neat1)和RNA结合蛋白形成的核体。尽管它们的作用尚未完全明确,但人们认为它们通过保留含有Alu序列3'-UTR反向重复序列(IRAlu)的mRNA在细胞核内,从而在转录后水平控制基因表达。在本研究中,我们发现,在垂体细胞中,旁斑的所有成分,包括四种主要蛋白质和Neat1,都呈现出昼夜节律性表达模式。此外,在EGFP cDNA的3'-UTR处插入IRAlu会导致egfp mRNA出现有节律的昼夜核内保留,当旁斑被破坏时这种保留就会消失,而插入单个反义Alu只有微弱的影响。使用实时视频显微镜,进一步表明这些IRAlu驱动EGFP蛋白的昼夜节律性表达。这项研究表明,旁斑由于其昼夜节律性表达,在转录后水平控制昼夜节律基因表达。