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SRSF3 shapes the structure of miR-17-92 cluster RNA and promotes selective processing of miR-17 and miR-20a.
Ratnadiwakara, Madara; Bahrudeen, Mohamed Nm; Aikio, Erika; Takabe, Piia; Engel, Rebekah M; Zahir, Zileena; Jardé, Thierry; McMurrick, Paul J; Abud, Helen E; Änkö, Minna-Liisa.
Afiliación
  • Ratnadiwakara M; Hudson Institute of Medical Research, Clayton, Vic., Australia.
  • Bahrudeen MN; Department of Molecular and Translational Science, School of Clinical Sciences, Monash University, Clayton, Vic., Australia.
  • Aikio E; Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.
  • Takabe P; Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.
  • Engel RM; Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.
  • Zahir Z; Department of Anatomy and Developmental Biology, Monash University, Clayton, Vic., Australia.
  • Jardé T; Development and Stem Cells Program, Monash Biomedicine Discovery Institute, Clayton, Vic., Australia.
  • McMurrick PJ; Department of Surgery, Cabrini Health, Cabrini Monash University, Malvern, Vic., Australia.
  • Abud HE; Hudson Institute of Medical Research, Clayton, Vic., Australia.
  • Änkö ML; Department of Molecular and Translational Science, School of Clinical Sciences, Monash University, Clayton, Vic., Australia.
EMBO Rep ; 24(7): e56021, 2023 Jul 05.
Article en En | MEDLINE | ID: mdl-37306233
MicroRNA (miRNA) biogenesis is tightly regulated to maintain distinct miRNA expression patterns. Almost half of mammalian miRNAs are generated from miRNA clusters, but this process is not well understood. We show here that Serine-arginine rich splicing factor 3 (SRSF3) controls the processing of miR-17-92 cluster miRNAs in pluripotent and cancer cells. SRSF3 binding to multiple CNNC motifs downstream of Drosha cleavage sites within miR-17-92 is required for the efficient processing of the cluster. SRSF3 depletion specifically compromises the processing of two paralog miRNAs, miR-17 and miR-20a. In addition to SRSF3 binding to the CNNC sites, the SRSF3 RS-domain is essential for miR-17-92 processing. SHAPE-MaP probing demonstrates that SRSF3 binding disrupts local and distant base pairing, resulting in global changes in miR-17-92 RNA structure. Our data suggest a model where SRSF3 binding, and potentially its RS-domain interactions, may facilitate an RNA structure that promotes miR-17-92 processing. SRSF3-mediated increase in miR-17/20a levels inhibits the cell cycle inhibitor p21, promoting self-renewal in normal and cancer cells. The SRSF3-miR-17-92-p21 pathway operates in colorectal cancer, linking SRSF3-mediated pri-miRNA processing and cancer pathogenesis.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: MicroARNs Tipo de estudio: Prognostic_studies Límite: Animals Idioma: En Revista: EMBO Rep Asunto de la revista: BIOLOGIA MOLECULAR Año: 2023 Tipo del documento: Article País de afiliación: Australia

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: MicroARNs Tipo de estudio: Prognostic_studies Límite: Animals Idioma: En Revista: EMBO Rep Asunto de la revista: BIOLOGIA MOLECULAR Año: 2023 Tipo del documento: Article País de afiliación: Australia