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Updated: May 6, 2026

Impedance-based Real-time Measurement of Cancer Cell Migration and Invasion
Published on: April 2, 2020
ARF1 regulates the Rho/MLC pathway to control EGF-dependent breast cancer cell invasion
Sabrina Schlienger1, Shirley Campbell, Audrey Claing
1Department of Pharmacology and Membrane Protein Research Group (GEPROM), Faculty of Medicine, Université de Montréal, Montréal, QC H3C 3J7, Canada.
Abstract:
Invasion of tumor cells is a key step in metastasis that depends largely on the ability of these cells to degrade the extracellular matrix. Although we have showed that the GTPase ADP-ribosylation factor 1 (ARF1) is overexpressed in highly invasive breast cancer cell lines and that epidermal growth factor stimulation can activate this ARF isoform to regulate migration as well as proliferation, the role of this small GTP-binding protein has not been addressed in the context of invasiveness. Here we report that modulation of ARF1 expression and activity markedly impaired the ability of M.D. Anderson-metastatic breast-231 cells, a prototypical highly invasive breast cancer cell line, to degrade the extracellular matrix by controlling metalloproteinase-9 activity. In addition, we demonstrate that this occurs through inhibition of invadopodia maturation and shedding of membrane-derived microvesicles, the two key structures involved in invasion. To further define the molecular mechanisms by which ARF1 controls invasiveness, we show that ARF1 acts to modulate RhoA and RhoC activity, which in turn affects myosin light-chain (MLC) phosphorylation. Together our findings underscore for the first time a key role for ARF1 in invasion of breast cancer cells and suggest that targeting the ARF/Rho/MLC signaling axis might be a promising strategy to inhibit invasiveness and metastasis.
Insights
ADP-ribosylation factor 1 (ARF1) is crucial for breast cancer cell invasion and metastasis. Targeting the ARF1/Rho/MLC pathway may inhibit cancer cell invasiveness and metastasis.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Tumor cell invasion and extracellular matrix degradation are critical steps in metastasis.
- ADP-ribosylation factor 1 (ARF1) is overexpressed in invasive breast cancer cells.
- ARF1's role in cancer cell invasiveness has not been fully elucidated.
Purpose of the Study:
- To investigate the role of ARF1 in breast cancer cell invasion.
- To elucidate the molecular mechanisms by which ARF1 regulates invasiveness.
Main Methods:
- Modulation of ARF1 expression and activity in M.D. Anderson-metastatic breast-231 cells.
- Assessment of extracellular matrix degradation and metalloproteinase-9 activity.
- Analysis of invadopodia maturation and microvesicle shedding.
- Investigation of ARF1's effect on RhoA, RhoC, and myosin light-chain (MLC) phosphorylation.
Main Results:
- ARF1 modulation significantly impaired extracellular matrix degradation by controlling metalloproteinase-9 activity.
- ARF1 inhibition affected invadopodia maturation and microvesicle shedding.
- ARF1 regulates invasiveness through modulation of RhoA and RhoC activity, impacting MLC phosphorylation.
Conclusions:
- ARF1 plays a key role in breast cancer cell invasion.
- Targeting the ARF1/Rho/MLC signaling axis presents a potential therapeutic strategy to inhibit cancer invasiveness and metastasis.
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