Department of Microbiology, Immunology and Molecular Genetics, University of California, Los Angeles, California 90025, USA.
RNA. 2013 Jun;19(6):811-27. doi: 10.1261/rna.039081.113. Epub 2013 Apr 24.
The expression of eukaryotic mRNAs is achieved though an intricate series of molecular processes that provide many steps for regulating the production of a final gene product. However, the relationships between individual steps in mRNA biosynthesis and the rates at which they occur are poorly understood. By applying RNA-seq to chromatin-associated and soluble nucleoplasmic fractions of RNA from Lipid A-stimulated macrophages, we examined the timing of exon ligation and transcript release from chromatin relative to the induction of transcription. We find that for a subset of genes in the Lipid A response, the ligation of certain exon pairs is delayed relative to the synthesis of the complete transcript. In contrast, 3' end cleavage and polyadenylation occur rapidly once transcription extends through the cleavage site. Our data indicate that these transcripts with delayed splicing are not released from the chromatin fraction until all the introns have been excised. These unusual kinetics result in a chromatin-associated pool of completely transcribed and 3'-processed transcripts that are not yet fully spliced. We also find that long introns containing repressed exons that will be excluded from the final mRNA are excised particularly slowly relative to other introns in a transcript. These results indicate that the kinetics of splicing and transcript release contribute to the timing of expression for multiple genes of the inflammatory response.
真核生物 mRNA 的表达是通过一系列复杂的分子过程实现的,这些过程为调控最终基因产物的产生提供了许多步骤。然而,mRNA 生物合成过程中各个步骤之间的关系及其发生的速率还了解甚少。通过将 RNA-seq 应用于脂多糖刺激的巨噬细胞中染色质相关和可溶性核质部分的 RNA,我们研究了外显子连接和转录物从染色质释放与转录诱导之间的时间关系。我们发现,在脂多糖反应的一组基因中,某些外显子对的连接相对于完整转录物的合成是延迟的。相比之下,一旦转录延伸通过切割位点,3'端切割和多聚腺苷酸化就会迅速发生。我们的数据表明,这些具有延迟剪接的转录物在所有内含子都被切除之前不会从染色质部分释放出来。这些不寻常的动力学导致了完整转录和 3' 加工转录物的染色质相关池,尚未完全剪接。我们还发现,含有将被排除在最终 mRNA 之外的受抑制外显子的长内含子相对于转录本中的其他内含子被特别缓慢地切除。这些结果表明,剪接和转录本释放的动力学有助于炎症反应的多个基因的表达时间。