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Updated: May 11, 2026

Screening Ion Channels in Cancer Cells
Published on: June 16, 2023
Correlation between potassium channel expression and sensitivity to drug-induced cell death in tumor cell lines
Luigi Leanza, Paul O'Reilly, Anne Doyle
1Department of Biology, University of Padova, Italy. ildi@civ.bio.unipd.it.
Abstract:
Plasma membrane (PM) and mitochondrial (mt) ion channels - particularly potassium channels - became oncological targets soon after the discovery that they are involved both in the regulation of proliferation and apoptosis. Some members of the Kv Shaker family, namely Kv1.1, Kv1.3, Kv1.5 and Kv11.1 (Herg), and the intermediate-conductance calcium-activated potassium KCa3.1 (IK) channels have been shown to contribute to apoptosis in various cell lines. Kv1.3, Kv1.5 and IK are located in the plasma membrane but also in the mitochondrial inner membrane, where they participate in apoptotic signalling. Interestingly, an altered protein expression of some of the channels mentioned above has been reported in neoplastic cell lines/tissues, but a systematic quantification addressing the protein expression of the above potassium channels in tumor cell lines of different origin has not been carried out yet. In the present study we investigated whether expression of specific potassium channels, at the mRNA and protein level, can be correlated with cell sensitivity to various apoptotic stimuli, including chemotherapeutic drugs, in a panel of cancer cell lines. The results show correlation between the protein expression of the Kv1.1 and Kv1.3 channels and susceptibility to death upon treatment with staurosporine, C2-ceramide and cisplatin. Furthermore, we investigated the correlation between Kv channel expression and sensitivity to three distinct membrane-permeant Kv1.3 inhibitors, since these drugs have recently been shown to be able to induce apoptosis and also reduce tumor volume in an in vivo model. Higher protein expression of Kv1.3 significantly correlated with lower cell survival upon treatment with clofazimine, one of the Kv1.3 inhibitors. These results suggest that expression of Kv1.1 and Kv1.3 sensitizes tumour cells of various origins to cytotoxins. Data reported in this work regarding potassium channel protein expression in different cancer cell lines may be exploited for pharmacological manipulation aiming to affect proliferation/apoptosis of cancer cells.
Insights
Potassium channels Kv1.1 and Kv1.3 expression in cancer cells correlates with sensitivity to chemotherapy and apoptosis-inducing drugs. Higher Kv1.3 protein levels predict increased cell death from specific Kv1.3 inhibitors.
Area of Science:
- Oncology
- Molecular Biology
- Ion Channel Physiology
Background:
- Plasma membrane and mitochondrial potassium channels regulate cancer cell proliferation and apoptosis.
- Specific Kv (Shaker family) and KCa3.1 channels are implicated in apoptotic signaling.
- Altered expression of these channels is observed in tumors, but systematic quantification across diverse cancer types is lacking.
Purpose of the Study:
- To investigate the correlation between potassium channel expression (mRNA and protein) and cancer cell sensitivity to apoptotic stimuli.
- To assess the relationship between Kv channel expression and response to chemotherapeutic drugs and Kv1.3 inhibitors.
- To determine if Kv1.1 and Kv1.3 expression sensitizes tumor cells to cytotoxins.
Main Methods:
- Analysis of mRNA and protein expression of Kv1.1, Kv1.3, Kv1.5, Kv11.1, and KCa3.1 channels in a panel of cancer cell lines.
- Assessment of cell sensitivity to apoptotic stimuli (staurosporine, C2-ceramide, cisplatin) and Kv1.3 inhibitors (clofazimine).
- Correlation analysis between channel expression levels and cell survival/death rates.
Main Results:
- Protein expression of Kv1.1 and Kv1.3 correlated with increased susceptibility to apoptosis induced by staurosporine, C2-ceramide, and cisplatin.
- Higher Kv1.3 protein expression significantly correlated with reduced cell survival upon treatment with the Kv1.3 inhibitor clofazimine.
- Kv channel expression was linked to sensitivity to membrane-permeant Kv1.3 inhibitors, which can induce apoptosis and reduce tumor volume.
Conclusions:
- Kv1.1 and Kv1.3 channel expression sensitizes tumor cells of various origins to cytotoxic agents.
- The findings suggest that potassium channel protein expression in cancer cells can be a predictive biomarker for therapeutic response.
- Targeting Kv channels may offer a strategy for pharmacological manipulation of cancer cell proliferation and apoptosis.
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