4.8 Article

Aberrant splicing in neuroblastoma generates RNA-fusion transcripts and provides vulnerability to spliceosome inhibitors

期刊

NUCLEIC ACIDS RESEARCH
卷 49, 期 5, 页码 2509-2521

出版社

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkab054

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资金

  1. Swedish Children Cancer Foundation
  2. Swedish Cancer Foundation
  3. Knut and AliceWallenberg Foundation
  4. Swedish Research Council
  5. Strategic Research Programme in Cancer (StratCan, SFO)
  6. Swedish Brain Foundation

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The study investigated the role of aberrant splicing and splicing-dependent RNA-fusion transcripts in neuroblastoma, showing that elevated expression of splicing factors is a strong predictor of poor clinical outcome. Additionally, analysis of over 900 identified fusion transcripts revealed their potential to generate altered gene products. Furthermore, inhibition of the spliceosome in neuroblastoma inhibited fusion expression, induced apoptosis, and inhibited tumor growth, indicating the spliceosome as a potential target for clinical intervention.
The paucity of recurrent mutations has hampered efforts to understand and treat neuroblastoma. Alternative splicing and splicing-dependent RNA-fusions represent mechanisms able to increase the gene product repertoire but their role in neuroblastoma remains largely unexplored. Here we investigate the presence and possible roles of aberrant splicing and splicing-dependent RNA-fusion transcripts in neuroblastoma. In addition, we attend to establish whether the spliceosome can be targeted to treat neuroblastoma. Through analysis of RNA-sequenced neuroblastoma we show that elevated expression of splicing factors is a strong predictor of poor clinical outcome. Furthermore, we identified >900 primarily intrachromosomal fusions containing canonical splicing sites. Fusions included transcripts from well-known oncogenes, were enriched for proximal genes and in chromosomal regions commonly gained or lost in neuroblastoma. As a proof-of-principle that these fusions can generate altered gene products, we characterized a ZNF451-BAG2 fusion, producing a truncated BAG2-protein which inhibited retinoic acid induced differentiation. Spliceosome inhibition impeded neuroblastoma fusion expression, induced apoptosis and inhibited xenograft tumor growth. Our findings elucidate a splicing-dependent mechanism generating altered gene products in neuroblastoma and show that the spliceosome is a potential target for clinical intervention.

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