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The G3BP1-UPF1-Associated Long Non-Coding RNA CALA Regulates RNA Turnover in the Cytoplasm.
Kirchhof, Luisa; Fouani, Youssef; Knau, Andrea; Aslan, Galip S; Heumüller, Andreas W; Wittig, Ilka; Müller-McNicoll, Michaela; Dimmeler, Stefanie; Jaé, Nicolas.
Afiliación
  • Kirchhof L; Institute of Cardiovascular Regeneration, University Hospital, Goethe University Frankfurt, 60590 Frankfurt, Germany.
  • Fouani Y; Faculty of Biological Sciences, Goethe University Frankfurt, 60438 Frankfurt, Germany.
  • Knau A; German Center of Cardiovascular Research (DZHK), 60590 Frankfurt, Germany.
  • Aslan GS; Institute of Cardiovascular Regeneration, University Hospital, Goethe University Frankfurt, 60590 Frankfurt, Germany.
  • Heumüller AW; Faculty of Biological Sciences, Goethe University Frankfurt, 60438 Frankfurt, Germany.
  • Wittig I; German Center of Cardiovascular Research (DZHK), 60590 Frankfurt, Germany.
  • Müller-McNicoll M; Institute of Cardiovascular Regeneration, University Hospital, Goethe University Frankfurt, 60590 Frankfurt, Germany.
  • Dimmeler S; Institute of Cardiovascular Regeneration, University Hospital, Goethe University Frankfurt, 60590 Frankfurt, Germany.
  • Jaé N; Faculty of Biological Sciences, Goethe University Frankfurt, 60438 Frankfurt, Germany.
Noncoding RNA ; 8(4)2022 Jun 30.
Article en En | MEDLINE | ID: mdl-35893232
ABSTRACT
Besides transcription, RNA decay accounts for a large proportion of regulated gene expression and is paramount for cellular functions. Classical RNA surveillance pathways, like nonsense-mediated decay (NMD), are also implicated in the turnover of non-mutant transcripts. Whereas numerous protein factors have been assigned to distinct RNA decay pathways, the contribution of long non-coding RNAs (lncRNAs) to RNA turnover remains unknown. Here we identify the lncRNA CALA as a potent regulator of RNA turnover in endothelial cells. We demonstrate that CALA forms cytoplasmic ribonucleoprotein complexes with G3BP1 and regulates endothelial cell functions. A detailed characterization of these G3BP1-positive complexes by mass spectrometry identifies UPF1 and numerous other NMD factors having cytoplasmic G3BP1-association that is CALA-dependent. Importantly, CALA silencing impairs degradation of NMD target transcripts, establishing CALA as a non-coding regulator of RNA steady-state levels in the endothelium.
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Texto completo: 1 Banco de datos: MEDLINE Tipo de estudio: Prognostic_studies / Risk_factors_studies Idioma: En Año: 2022 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Tipo de estudio: Prognostic_studies / Risk_factors_studies Idioma: En Año: 2022 Tipo del documento: Article