Institute for Genetics, University of Cologne, 50674 Cologne, Germany.
Section of Bioinformatics and Systems Cardiology, Department of Internal Medicine III and Klaus Tschira Institute for Integrative Computational Cardiology, University of Heidelberg, 69120 Heidelberg, Germany.
Nucleic Acids Res. 2020 Sep 4;48(15):8626-8644. doi: 10.1093/nar/gkaa564.
The exon junction complex (EJC) is an essential constituent and regulator of spliced messenger ribonucleoprotein particles (mRNPs) in metazoans. As a core component of the EJC, CASC3 was described to be pivotal for EJC-dependent nuclear and cytoplasmic processes. However, recent evidence suggests that CASC3 functions differently from other EJC core proteins. Here, we have established human CASC3 knockout cell lines to elucidate the cellular role of CASC3. In the knockout cells, overall EJC composition and EJC-dependent splicing are unchanged. A transcriptome-wide analysis reveals that hundreds of mRNA isoforms targeted by nonsense-mediated decay (NMD) are upregulated. Mechanistically, recruiting CASC3 to reporter mRNAs by direct tethering or via binding to the EJC stimulates mRNA decay and endonucleolytic cleavage at the termination codon. Building on existing EJC-NMD models, we propose that CASC3 equips the EJC with the persisting ability to communicate with the NMD machinery in the cytoplasm. Collectively, our results characterize CASC3 as a peripheral EJC protein that tailors the transcriptome by promoting the degradation of EJC-dependent NMD substrates.
外显子衔接复合物(EJC)是真核生物剪接信使核糖核蛋白颗粒(mRNPs)的必需组成部分和调节因子。作为 EJC 的核心组成部分,CASC3 被描述为 EJC 依赖性核和细胞质过程的关键。然而,最近的证据表明,CASC3 的功能与其他 EJC 核心蛋白不同。在这里,我们建立了人类 CASC3 敲除细胞系,以阐明 CASC3 的细胞功能。在敲除细胞中,整体 EJC 组成和 EJC 依赖性剪接没有改变。全转录组分析表明,数百种被无意义介导的衰变(NMD)靶向的 mRNA 亚型上调。从机制上讲,通过直接连接或与 EJC 结合将 CASC3 募集到报告 mRNA 上,可刺激 mRNA 衰变和终止密码子处的内切核酸酶切割。基于现有的 EJC-NMD 模型,我们提出 CASC3 赋予 EJC 与细胞质中的 NMD 机制持续通信的能力。总的来说,我们的结果将 CASC3 表征为一种外围 EJC 蛋白,通过促进 EJC 依赖性 NMD 底物的降解来调整转录组。