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Transcriptome 3′end organization by PCF11 links alternative polyadenylation to formation and neuronal differentiation of neuroblastoma

Author

Listed:
  • Anton Ogorodnikov

    (University Medical Centre Mainz
    University Medical Centre Mainz
    University Medical Centre Mainz
    University of California San Francisco (UCSF))

  • Michal Levin

    (University Medical Centre Mainz
    University Medical Centre Mainz
    University Medical Centre Mainz)

  • Surendra Tattikota

    (University Medical Centre Mainz
    University Medical Centre Mainz
    University Medical Centre Mainz)

  • Sergey Tokalov

    (University Medical Centre Mainz
    University Medical Centre Mainz
    University Medical Centre Mainz)

  • Mainul Hoque

    (Rutgers New Jersey Medical School)

  • Denise Scherzinger

    (University Medical Centre Mainz)

  • Federico Marini

    (University Medical Centre Mainz
    University Medical Centre Mainz)

  • Ansgar Poetsch

    (Max-Planck-Institute for Heart and Lung Research
    Ruhr-University Bochum
    Plymouth University)

  • Harald Binder

    (Faculty of Medicine and Medical Center—University of Freiburg)

  • Stephan Macher-Göppinger

    (University Medical Centre Mainz)

  • Hans Christian Probst

    (University Medical Centre Mainz
    University Medical Centre Mainz)

  • Bin Tian

    (Rutgers New Jersey Medical School)

  • Michael Schaefer

    (University Medical Centre Mainz)

  • Karl J. Lackner

    (University Medical Centre Mainz)

  • Frank Westermann

    (German Cancer Research Centre (DKFZ))

  • Sven Danckwardt

    (University Medical Centre Mainz
    University Medical Centre Mainz
    University Medical Centre Mainz
    German Centre for Cardiovascular Research (DZHK))

Abstract

Diversification at the transcriptome 3′end is an important and evolutionarily conserved layer of gene regulation associated with differentiation and dedifferentiation processes. Here, we identify extensive transcriptome 3′end-alterations in neuroblastoma, a tumour entity with a paucity of recurrent somatic mutations and an unusually high frequency of spontaneous regression. Utilising extensive RNAi-screening we reveal the landscape and drivers of transcriptome 3′end-diversification, discovering PCF11 as critical regulator, directing alternative polyadenylation (APA) of hundreds of transcripts including a differentiation RNA-operon. PCF11 shapes inputs converging on WNT-signalling, and governs cell cycle, proliferation, apoptosis and neurodifferentiation. Postnatal PCF11 down-regulation induces a neurodifferentiation program, and low-level PCF11 in neuroblastoma associates with favourable outcome and spontaneous tumour regression. Our findings document a critical role for APA in tumorigenesis and describe a novel mechanism for cell fate reprogramming in neuroblastoma with potentially important clinical implications. We provide an interactive data repository of transcriptome-wide APA covering > 170 RNAis, and an APA-network map with regulatory hubs.

Suggested Citation

  • Anton Ogorodnikov & Michal Levin & Surendra Tattikota & Sergey Tokalov & Mainul Hoque & Denise Scherzinger & Federico Marini & Ansgar Poetsch & Harald Binder & Stephan Macher-Göppinger & Hans Christia, 2018. "Transcriptome 3′end organization by PCF11 links alternative polyadenylation to formation and neuronal differentiation of neuroblastoma," Nature Communications, Nature, vol. 9(1), pages 1-16, December.
  • Handle: RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-07580-5
    DOI: 10.1038/s41467-018-07580-5
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    Cited by:

    1. Yange Cui & Luyang Wang & Qingbao Ding & Jihae Shin & Joel Cassel & Qin Liu & Joseph M. Salvino & Bin Tian, 2023. "Elevated pre-mRNA 3′ end processing activity in cancer cells renders vulnerability to inhibition of cleavage and polyadenylation," Nature Communications, Nature, vol. 14(1), pages 1-20, December.

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