| Literature DB >> 34635782 |
Georgios I Laliotis1,2,3,4, Adam D Kenney5,6, Evangelia Chavdoula7,5, Arturo Orlacchio7,5, Abdul Kaba7, Alessandro La Ferlita7,5,8, Vollter Anastas7,5,9, Christos Tsatsanis10,11, Joal D Beane5,12, Lalit Sehgal5,13, Vincenzo Coppola7,5, Jacob S Yount5,6, Philip N Tsichlis14,15,16.
Abstract
AKT-phosphorylated IWS1 promotes Histone H3K36 trimethylation and alternative RNA splicing of target genes, including the U2AF65 splicing factor-encoding U2AF2. The predominant U2AF2 transcript, upon IWS1 phosphorylation block, lacks the RS-domain-encoding exon 2, and encodes a protein which fails to bind Prp19. Here we show that although both U2AF65 isoforms bind intronless mRNAs containing cytoplasmic accumulation region elements (CAR-E), only the RS domain-containing U2AF65 recruits Prp19 and promotes their nuclear export. The loading of U2AF65 to CAR-Elements was RS domain-independent, but RNA PolII-dependent. Virus- or poly(I:C)-induced type I IFNs are encoded by genes targeted by the pathway. IWS1 phosphorylation-deficient cells therefore, express reduced levels of IFNα1/IFNβ1 proteins, and exhibit enhanced sensitivity to infection by multiple cytolytic viruses. Enhanced sensitivity of IWS1-deficient cells to Vesicular Stomatitis Virus and Reovirus resulted in enhanced apoptotic cell death via caspase activation. Inhibition of this pathway may therefore sensitize cancer cells to oncolytic viruses.Entities:
Year: 2021 PMID: 34635782 PMCID: PMC8505486 DOI: 10.1038/s42003-021-02668-z
Source DB: PubMed Journal: Commun Biol ISSN: 2399-3642