Department of Molecular Biology and Genetics, Aarhus University, Denmark.
The Bioinformatics Centre, Department of Biology, University of Copenhagen, Denmark.
Nucleic Acids Res. 2018 Nov 30;46(21):11502-11513. doi: 10.1093/nar/gky817.
Gene expression programs change during cellular transitions. It is well established that a network of transcription factors and chromatin modifiers regulate RNA levels during embryonic stem cell (ESC) differentiation, but the full impact of post-transcriptional processes remains elusive. While cytoplasmic RNA turnover mechanisms have been implicated in differentiation, the contribution of nuclear RNA decay has not been investigated. Here, we differentiate mouse ESCs, depleted for the ribonucleolytic RNA exosome, into embryoid bodies to determine to which degree RNA abundance in the two states can be attributed to changes in transcription versus RNA decay by the exosome. As a general observation, we find that exosome depletion mainly leads to the stabilization of RNAs from lowly transcribed loci, including several protein-coding genes. Depletion of the nuclear exosome cofactor RBM7 leads to similar effects. In particular, transcripts that are differentially expressed between states tend to be more exosome sensitive in the state where expression is low. We conclude that the RNA exosome contributes to down-regulation of transcripts with disparate expression, often in conjunction with transcriptional down-regulation.
基因表达程序在细胞转变过程中发生变化。已经证实,转录因子和染色质修饰物网络在胚胎干细胞(ESC)分化过程中调节 RNA 水平,但转录后过程的全部影响仍难以捉摸。虽然细胞质 RNA 周转机制已被牵涉到分化过程中,但核 RNA 衰变的贡献尚未得到研究。在这里,我们将缺乏核糖核酸酶 RNA 外切酶的小鼠 ESC 分化为胚状体,以确定在这两种状态下,RNA 丰度在多大程度上归因于转录与外切酶介导的 RNA 衰变的变化。作为一个普遍的观察结果,我们发现外切酶的耗竭主要导致低转录基因座的 RNA 稳定性增加,包括几个编码蛋白质的基因。核外切酶辅助因子 RBM7 的耗竭也会导致类似的效果。特别是,在状态之间差异表达的转录物往往在表达较低的状态下对外切酶更敏感。我们得出结论,RNA 外切酶有助于下调表达差异的转录物,通常与转录下调有关。