Aslanzadeh Morteza, Stanicek Laura, Tarbier Marcel, Mármol-Sánchez Emilio, Biryukova Inna, Friedländer Marc R
Science for Life Laboratory, Department of Molecular Biosciences, The Wenner-Gren Institute, Stockholm University, Sweden.
Science for Life Laboratory, Department of Microbiology, Tumor and Cell Biology, Karolinska Institute, Solna, Sweden.
NAR Genom Bioinform. 2024 May 6;6(2):lqae045. doi: 10.1093/nargab/lqae045. eCollection 2024 Jun.
Malat1 is a long-noncoding RNA with critical roles in gene regulation and cancer metastasis, however its functional role in stem cells is largely unexplored. We here perform a nuclear knockdown of Malat1 in mouse embryonic stem cells, causing the de-regulation of 320 genes and aberrant splicing of 90 transcripts, some of which potentially affecting the translated protein sequence. We find evidence that Malat1 directly interacts with gene bodies and aberrantly spliced transcripts, and that it locates upstream of down-regulated genes at their putative enhancer regions, in agreement with functional genomics data. Consistent with this, we find these genes affected at both exon and intron levels, suggesting that they are transcriptionally regulated by Malat1. Besides, the down-regulated genes are regulated by specific transcription factors and bear both activating and repressive chromatin marks, suggesting that some of them might be regulated by bivalent promoters. We propose a model in which Malat1 facilitates the transcription of genes involved in chromatid dynamics and mitosis in one pathway, and affects the splicing of transcripts that are themselves involved in RNA processing in a distinct pathway. Lastly, we compare our findings with Malat1 perturbation studies performed in other cell systems and .
Malat1是一种长链非编码RNA,在基因调控和癌症转移中起关键作用,然而其在干细胞中的功能作用在很大程度上尚未被探索。我们在此对小鼠胚胎干细胞中的Malat1进行细胞核敲低,导致320个基因失调和90个转录本的异常剪接,其中一些可能影响翻译后的蛋白质序列。我们发现证据表明,Malat1直接与基因体和异常剪接的转录本相互作用,并且它位于下调基因假定增强子区域的上游,这与功能基因组学数据一致。与此相符的是,我们发现这些基因在 exon 和内含子水平均受到影响,表明它们受到Malat1的转录调控。此外,下调的基因受特定转录因子调控,并具有激活和抑制性染色质标记,表明其中一些可能受二价启动子调控。我们提出了一个模型,其中Malat1在一条途径中促进参与染色单体动态和有丝分裂的基因的转录,并在另一条不同途径中影响自身参与RNA加工的转录本的剪接。最后,我们将我们的发现与在其他细胞系统中进行的Malat1干扰研究进行比较。