Iasillo Claudia, Schmid Manfred, Yahia Yousra, Maqbool Muhammad A, Descostes Nicolas, Karadoulama Evdoxia, Bertrand Edouard, Andrau Jean-Christophe, Jensen Torben Heick
Department of Molecular Biology and Genetics, Aarhus University, C. F. M⊘llers Allé 3, Building 1130, DK-8000 Aarhus C, Denmark.
IGMM, CNRS, Univ. Montpellier, 34293 Montpellier, Cedex 5, France.
Nucleic Acids Res. 2017 Sep 29;45(17):10229-10241. doi: 10.1093/nar/gkx647.
Termination of transcription is important for establishing gene punctuation marks. It is also critical for suppressing many of the pervasive transcription events occurring throughout eukaryotic genomes and coupling their RNA products to efficient decay. In human cells, the ARS2 protein has been implicated in such function as its depletion causes transcriptional read-through of selected gene terminators and because it physically interacts with the ribonucleolytic nuclear RNA exosome. Here, we study the role of ARS2 on transcription and RNA metabolism genome wide. We show that ARS2 depletion negatively impacts levels of promoter-proximal RNA polymerase II at protein-coding (pc) genes. Moreover, our results reveal a general role of ARS2 in transcription termination-coupled RNA turnover at short transcription units like snRNA-, replication-dependent histone-, promoter upstream transcript- and enhancer RNA-loci. Depletion of the ARS2 interaction partner ZC3H18 mimics the ARS2 depletion, although to a milder extent, whereas depletion of the exosome core subunit RRP40 only impacts RNA abundance post-transcriptionally. Interestingly, ARS2 is also involved in transcription termination events within first introns of pc genes. Our work therefore establishes ARS2 as a general suppressor of pervasive transcription with the potential to regulate pc gene expression.
转录终止对于建立基因标点符号很重要。它对于抑制真核生物基因组中普遍存在的许多转录事件,并将其RNA产物与有效的降解相耦合也至关重要。在人类细胞中,ARS2蛋白参与了这种功能,因为其缺失会导致选定基因终止子的转录通读,并且它与核糖核酸酶核RNA外泌体发生物理相互作用。在此,我们在全基因组范围内研究ARS2在转录和RNA代谢中的作用。我们表明,ARS2缺失对蛋白质编码(pc)基因处启动子近端RNA聚合酶II的水平产生负面影响。此外,我们的结果揭示了ARS2在短转录单元(如snRNA、复制依赖性组蛋白、启动子上游转录本和增强子RNA位点)的转录终止偶联RNA周转中的普遍作用。ARS2相互作用伴侣ZC3H18的缺失模拟了ARS2的缺失,尽管程度较轻,而外泌体核心亚基RRP40的缺失仅在转录后影响RNA丰度。有趣的是,ARS2还参与pc基因第一内含子内的转录终止事件。因此,我们的工作将ARS2确立为普遍转录的一般抑制因子,具有调节pc基因表达的潜力。