CASC3 promotes transcriptome-wide activation of nonsense-mediated decay by the exon junction complex

Author:

Gerbracht Jennifer V1,Boehm Volker1,Britto-Borges Thiago23,Kallabis Sebastian4,Wiederstein Janica L4,Ciriello Simona1,Aschemeier Dominik U1,Krüger Marcus4,Frese Christian K4,Altmüller Janine56,Dieterich Christoph23ORCID,Gehring Niels H16ORCID

Affiliation:

1. Institute for Genetics, University of Cologne, 50674 Cologne, Germany

2. 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

3. DZHK (German Centre for Cardiovascular Research), Partner site Heidelberg/Mannheim, 69120 Heidelberg, Germany

4. CECAD Research Center, University of Cologne, Joseph-Stelzmann-Str. 26, 50931 Cologne, Germany

5. Cologne Center for Genomics (CCG), University of Cologne, 50931 Cologne, Germany

6. Center for Molecular Medicine Cologne (CMMC), University of Cologne, 50937 Cologne, Germany

Abstract

Abstract 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.

Funder

Deutsche Forschungsgemeinschaft

University of Cologne

Heisenberg professorship

Klaus Tschira Stiftung

DFG

Publisher

Oxford University Press (OUP)

Subject

Genetics

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