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An Evolutionarily Conserved AU-Rich Element in the 3' Untranslated Region of a Transcript Misannotated as a Long Noncoding RNA Regulates RNA Stability

  1. Author:
    Dangelmaier, Emily A
    Li, Xiao Ling
    Hartford, Corrine Corrina R
    King,Julianna
    Zibitt, Meira S
    Chari,Raj
    Grammatikakis, Ioannis
    Lal, Ashish [ORCID]
  2. Author Address

    Regulatory RNAs and Cancer Section, Genetics Branch, Center for Cancer Research (CCR), National Cancer Institutegrid.48336.3a (NCI), National Institutes of Health (NIH), Bethesda, Maryland, USA., Genome Modification Core, Frederick National Lab for Cancer Research, National Cancer Institutegrid.48336.3a, Frederick, Maryland, USA.,
    1. Year: 2022
    2. Date: Mar 10
    3. Epub Date: 2022 03 10
  1. Journal: Molecular and cellular biology
    1. Pages: e0050521
  2. Type of Article: Article
  3. Article Number: e0050521
  1. Abstract:

    One of the primary mechanisms of post-transcriptional gene regulation is the modulation of RNA stability. We recently discovered that LINC00675, a transcript annotated as a long noncoding RNA (lncRNA), is transcriptionally regulated by FOXA1 and encodes a highly conserved small protein that localizes to the endoplasmic reticulum, hence renamed as FORCP (FOXA1-regulated conserved small protein). Here, we show that the endogenous FORCP transcript is rapidly degraded and rendered unstable as a result of 3 39;UTR-mediated degradation. Surprisingly, although the FORCP transcript is a canonical nonsense-mediated decay (NMD) and microRNA (miRNA) target, we found that it is not degraded by NMD or miRNAs. Targeted deletion of an evolutionarily conserved region in the FORCP 3 39;UTR using CRISPR/Cas9 significantly increased the stability of the FORCP transcript. Interestingly, this region requires the presence of an immediate downstream 55-nt-long sequence for transcript stability regulation. Functionally, colorectal cancer cells lacking this conserved region expressed from the endogenous FORCP locus displayed decreased proliferation and clonogenicity. These data demonstrate that the FORCP transcript is destabilized via conserved elements within its 3 39;UTR and emphasize the need to interrogate the function of a given 3 39;UTR in its native context.

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External Sources

  1. DOI: 10.1128/mcb.00505-21
  2. PMID: 35274990

Library Notes

  1. Fiscal Year: FY2021-2022
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