Knockdown of BC200 RNA expression reduces cell migration and invasion by destabilizing mRNA for calcium-binding

Heegwon Shin1, Jungmin Lee1, Youngmi Kim1

  • 1a Department of Chemistry , KAIST , Daejeon , Korea.

RNA Biology
|March 10, 2017
PubMed

Insights

BC200 RNA promotes cancer cell motility and metastasis by stabilizing S100A11 transcripts. Reducing BC200 RNA levels decreases cell migration and invasion, highlighting a novel therapeutic target.

Area of Science:

  • Molecular Biology
  • Cancer Research
  • RNA Biology

Background:

  • BC200 RNA, typically neuron-specific, is overexpressed in various cancers.
  • BC200 RNA's role in cancer metastasis is established, but its mechanism remains unclear.

Purpose of the Study:

  • To elucidate the mechanism by which BC200 RNA promotes cancer cell motility.
  • To identify genes regulated by BC200 RNA that influence cell motility.

Main Methods:

  • BC200 RNA knockdown in cancer cell lines.
  • Assessment of cell motility (migration and invasion).
  • Ribosome footprint profiling to analyze gene expression changes.
  • Actinomycin-chase experiments to determine mRNA stability.

Main Results:

  • BC200 RNA knockdown significantly reduced cancer cell migration and invasion.
  • Ribosome profiling identified 29 genes with altered ribosomal occupation, including S100A11.
  • BC200 RNA knockdown decreased S100A11 mRNA and protein levels by reducing mRNA stability.
  • S100A11 was identified as the primary mediator of BC200 RNA's effect on cell motility.

Conclusions:

  • BC200 RNA promotes cancer cell motility and invasion.
  • The mechanism involves BC200 RNA stabilizing S100A11 transcripts, leading to increased S100A11 expression.
  • Targeting BC200 RNA or its downstream effects on S100A11 may offer therapeutic strategies for cancer metastasis.