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Updated: Mar 6, 2026

Impedance-based Real-time Measurement of Cancer Cell Migration and Invasion
Published on: April 2, 2020
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.
Abstract:
Although BC200 RNA is best known as a neuron-specific non-coding RNA, it is overexpressed in various cancer cells. BC200 RNA was recently shown to contribute to metastasis in several cancer cell lines, but the underlying mechanism was not understood in detail. To examine this mechanism, we knocked down BC200 RNA in cancer cells, which overexpress the RNA, and examined cell motility, profiling of ribosome footprints, and the correlation between cell motility changes and genes exhibiting altered ribosome profiles. We found that BC200 RNA knockdown reduced cell migration and invasion, suggesting that BC200 RNA promotes cell motility. Our ribosome profiling analysis identified 29 genes whose ribosomal occupations were altered more than 2-fold by BC200 RNA knockdown. Many (> 30%) of them were directly or indirectly related to cancer progression. Among them, we focused on S100A11 (which showed a reduced ribosome footprint) because its expression was previously shown to increase cellular motility. S100A11 was decreased at both the mRNA and protein levels following knockdown of BC200 RNA. An actinomycin-chase experiment showed that BC200 RNA knockdown significantly decreased the stability of the S100A11 mRNA without changing its transcription rate, suggesting that the downregulation of S100A11 was mainly caused by destabilization of its mRNA. Finally, we showed that the BC200 RNA-knockdown-induced decrease in cell motility was mainly mediated by S100A11. Together, our results show that BC200 RNA promotes cell motility by stabilizing S100A11 transcripts.
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.
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