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U1 snRNP regulates cancer cell migration and invasion in vitro

Nature Communications · 2020 · Vol. 11(1) · pp. 1–1
Jung‐Min OhChristopher C. VentersChao DiAnna Maria PintoLili WanIhab YounisZhiqiang CaiChie AraiByung Ran SoJingqi DuanGideon Dreyfuss

Abstract

Stimulated cells and cancer cells have widespread shortening of mRNA 3'-untranslated regions (3'UTRs) and switches to shorter mRNA isoforms due to usage of more proximal polyadenylation signals (PASs) in introns and last exons. U1 snRNP (U1), vertebrates' most abundant non-coding (spliceosomal) small nuclear RNA, silences proximal PASs and its inhibition with antisense morpholino oligonucleotides (U1 AMO) triggers widespread premature transcription termination and mRNA shortening. Here we show that low U1 AMO doses increase cancer cells' migration and invasion in vitro by up to 500%, whereas U1 over-expression has the opposite effect. In addition to 3'UTR length, numerous transcriptome changes that could contribute to this phenotype are observed, including alternative splicing, and mRNA expression levels of proto-oncogenes and tumor suppressors. These findings reveal an unexpected role for U1 homeostasis (available U1 relative to transcription) in oncogenic and activated cell states, and suggest U1 as a potential target for their modulation.

RNA Research and SplicingRNA modifications and cancerRNA and protein synthesis mechanismsPolyadenylationBiologyRNA splicingExonUntranslated regionTranscription (linguistics)snRNPCell biologyMessenger RNAIntron

MeSH terms

Cell MovementHumansNeoplasm InvasivenessNeoplasmsRNA SplicingRNA, MessengerOligonucleotides, AntisenseRibonucleoprotein, U1 Small NuclearCell Line, Tumor

Funding

  • Howard Hughes Medical Institute
  • National Institutes of Health
  • National Institute of General Medical Sciences
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7,224
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