SNHG5 promotes colorectal cancer cell survival by counteracting STAU1-mediated mRNA destabilization

Nkerorema Djodji Damas(University of Copenhagen), Michela Marcatti(University of Copenhagen), Christophé Côme(University of Copenhagen), Lise Lotte Christensen(Aarhus University Hospital), Morten Muhlig Nielsen(Aarhus University Hospital), Roland Baumgartner(University of Copenhagen), Helene M. Gylling(University of Copenhagen), Giulia Maglieri(University of Copenhagen), Carsten F. Rundsten(University of Copenhagen), Stefan E. Seemann(University of Copenhagen), Nicolas Rapin(University of Copenhagen), Simon Thézenas(Institut de Recherche en Cancérologie de Montpellier), Søren Vang(Aarhus University Hospital), Torben Ørntoft(Aarhus University Hospital), Claus L. Andersen(Aarhus University Hospital), Jakob Skou Pedersen(Aarhus University Hospital), Anders H. Lund(University of Copenhagen)
Nature Communications
December 22, 2016
Cited by 220Open Access
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Abstract

We currently have limited knowledge of the involvement of long non-coding RNAs (lncRNAs) in normal cellular processes and pathologies. Here, we identify and characterize SNHG5 as a stable cytoplasmic lncRNA with up-regulated expression in colorectal cancer. Depletion of SNHG5 induces cell cycle arrest and apoptosis in vitro and limits tumour outgrowth in vivo, whereas SNHG5 overexpression counteracts oxaliplatin-induced apoptosis. Using an unbiased approach, we identify 121 transcript sites interacting with SNHG5 in the cytoplasm. Importantly, knockdown of key SNHG5 target transcripts, including SPATS2, induces apoptosis and thus mimics the effect seen following SNHG5 depletion. Mechanistically, we suggest that SNHG5 stabilizes the target transcripts by blocking their degradation by STAU1. Accordingly, depletion of STAU1 rescues the apoptosis induced after SNHG5 knockdown. Hence, we characterize SNHG5 as a lncRNA promoting tumour cell survival in colorectal cancer and delineate a novel mechanism in which a cytoplasmic lncRNA functions through blocking the action of STAU1.


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