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Updated: Sep 2, 2025

Impedance-based Real-time Measurement of Cancer Cell Migration and Invasion
Published on: April 2, 2020
ERK2 signaling regulates cell-cell adhesion of epithelial cells and enhances growth factor-induced cell scattering
Jan Rasl1, Josipa Grušanović2, Zuzana Klímová2
1Laboratory of Cell Signalling Institute of Microbiology of the Czech Academy of Sciences, Prague, Czech Republic; Department of Cell Biology, Faculty of Science, Charles University, Prague, Czech Republic.
Abstract:
The ERK signaling pathway, consisting of core protein kinases Raf, MEK and effector kinases ERK1/2, regulates various biological outcomes such as cell proliferation, differentiation, apoptosis, or cell migration. Signal transduction through the ERK signaling pathway is tightly controlled at all levels of the pathway. However, it is not well understood whether ERK pathway signaling can be modulated by the abundance of ERK pathway core kinases. In this study, we investigated the effects of low-level overexpression of the ERK2 isoform on the phenotype and scattering of cuboidal MDCK epithelial cells growing in discrete multicellular clusters. We show that ERK2 overexpression reduced the vertical size of lateral membranes that contain cell-cell adhesion complexes. Consequently, ERK2 overexpressing cells were unable to develop cuboidal shape, remained flat with increased spread area and intercellular adhesive contacts were present only on the basal side. Interestingly, ERK2 overexpression was not sufficient to increase phosphorylation of multiple downstream targets including transcription factors and induce global changes in gene expression, namely to increase the expression of pro-migratory transcription factor Fra1. However, ERK2 overexpression enhanced HGF/SF-induced cell scattering as these cells scattered more rapidly and to a greater extent than parental cells. Our results suggest that an increase in ERK2 expression primarily reduces cell-cell cohesion and that weakened intercellular adhesion synergizes with upstream signaling in the conversion of the multicellular epithelium into single migrating cells. This mechanism may be clinically relevant as the analysis of clinical data revealed that in one type of cancer, pancreatic adenocarcinoma, ERK2 overexpression correlates with a worse prognosis.
Insights
Overexpressing ERK2 in epithelial cells reduces cell-cell adhesion, enhancing cell scattering. This ERK2 effect may worsen pancreatic cancer prognosis.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- The ERK signaling pathway regulates critical cellular functions, including proliferation, differentiation, apoptosis, and migration.
- While tightly controlled, the impact of core kinase abundance on ERK pathway signaling remains unclear.
Purpose of the Study:
- To investigate the effects of ERK2 overexpression on epithelial cell phenotype and scattering.
- To determine if altered ERK2 levels impact cell-cell adhesion and migratory potential.
Main Methods:
- Utilized MDCK epithelial cells with low-level ERK2 overexpression.
- Analyzed cell morphology, lateral membrane size, and intercellular adhesion.
- Assessed HGF/SF-induced cell scattering and downstream target phosphorylation.
Main Results:
- ERK2 overexpression reduced lateral membrane size and prevented cuboidal cell shape, leading to flattened cells with increased spread area.
- Intercellular adhesion was confined to the basal side, indicating weakened lateral adhesion.
- Despite no global gene expression changes or increased downstream target phosphorylation, ERK2 overexpression enhanced HGF/SF-induced cell scattering.
Conclusions:
- Increased ERK2 expression weakens cell-cell cohesion, facilitating epithelial-to-single cell conversion.
- This mechanism of reduced intercellular adhesion synergizes with upstream signaling to promote cell migration.
- ERK2 overexpression correlates with a worse prognosis in pancreatic adenocarcinoma, suggesting clinical relevance.
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