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Published on: July 21, 2018
Lovastatin induces multiple stress pathways including LKB1/AMPK activation that regulate its cytotoxic effects in
Laurie Ma1, Nima Niknejad, Ivan Gorn-Hondermann
1Centre for Cancer Therapeutics, The Ottawa Hospital Research Institute, Ontario, Canada.
Background:
Cellular stress responses trigger signaling cascades that inhibit proliferation and protein translation to help alleviate the stress or if the stress cannot be overcome induce apoptosis. In recent studies, we demonstrated the ability of lovastatin, an inhibitor of mevalonate synthesis, to induce the Integrated Stress Response as well as inhibiting epidermal growth factor receptor (EGFR) activation.
Methodology/Principal Findings:
In this study, we evaluated the effects of lovastatin on the activity of the LKB1/AMPK pathway that is activated upon cellular energy shortage and can interact with the above pathways. In the squamous cell carcinoma (SCC) cell lines SCC9 and SCC25, lovastatin treatment (1-25 µM, 24 hrs) induced LKB1 and AMPK activation similar to metformin (1-10 mM, 24 hrs), a known inducer of this pathway. Lovastatin treatment impaired mitochondrial function and also decreased cellular ADP/ATP ratios, common triggers of LKB1/AMPK activation. The cytotoxic effects of lovastatin were attenuated in LKB1 null MEFs indicating a role for this pathway in regulating lovastatin-induced cytotoxicity. Of clinical relevance, lovastatin induces synergistic cytotoxicity in combination with the EGFR inhibitor gefitinib. In LKB1 deficient (A549, HeLa) and expressing (SCC9, SCC25) cell lines, metformin enhanced gefitinib cytotoxicity only in LKB1 expressing cell lines while both groups showed synergistic cytotoxic effects with lovastatin treatments. Furthermore, the combination of lovastatin with gefitinib induced a potent apoptotic response without significant induction of autophagy that is often induced during metabolic stress inhibiting cell death.
Conclusion/Significance:
Thus, targeting multiple metabolic stress pathways including the LKB1/AMPK pathway enhances lovastatin's ability to synergize with gefitinib in SCC cells.
Insights
Lovastatin activates the LKB1/AMPK pathway and synergizes with gefitinib to induce apoptosis in squamous cell carcinoma. Targeting metabolic stress enhances cancer cell death, offering new therapeutic strategies.
Area of Science:
- Biochemistry
- Cell Biology
- Oncology
Background:
- Cellular stress responses involve signaling cascades that inhibit proliferation and protein translation, or induce apoptosis.
- Lovastatin, a mevalonate synthesis inhibitor, induces the Integrated Stress Response and inhibits epidermal growth factor receptor (EGFR) activation.
Purpose of the Study:
- To evaluate lovastatin's effects on the LKB1/AMPK pathway, which is activated by cellular energy shortage.
- To investigate the role of the LKB1/AMPK pathway in lovastatin-induced cytotoxicity.
- To assess the synergistic effects of lovastatin and gefitinib in combination with LKB1 status.
Main Methods:
- Treatment of squamous cell carcinoma (SCC) cell lines (SCC9, SCC25) and LKB1-null MEFs with lovastatin or metformin.
- Assessment of LKB1 and AMPK activation, mitochondrial function, and ADP/ATP ratios.
- Evaluation of synergistic cytotoxicity of lovastatin and gefitinib in LKB1-deficient and expressing cell lines.
Main Results:
- Lovastatin induced LKB1 and AMPK activation in SCC cell lines, similar to metformin.
- Lovastatin impaired mitochondrial function and decreased cellular ADP/ATP ratios.
- Cytotoxic effects of lovastatin were attenuated in LKB1-null MEFs.
- Lovastatin demonstrated synergistic cytotoxicity with gefitinib, particularly in LKB1-expressing cells.
- The combination of lovastatin and gefitinib induced potent apoptosis without significant autophagy.
Conclusions:
- Targeting the LKB1/AMPK pathway enhances lovastatin's synergistic effect with gefitinib in SCC cells.
- Combination therapy targeting metabolic stress pathways offers a promising strategy for SCC treatment.
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